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The Pennsylvanian (Moscovian) Izvarino Section, Donets Basin, Ukraine: A Multidisciplinary Study on Microfacies, Biostratigraphy (Conodonts, Foraminifers, and Ostracodes), and Paleoecology

Published online by Cambridge University Press:  11 August 2017

Beate Fohrer
Affiliation:
Institut für Paläontologie, Universität Erlangen-Nürnberg, Loewenichstr. 28, D-91054 Erlangen, Germany,
Tamara I. Nemyrovska
Affiliation:
Institute of Geological Sciences, Ukrainian Academy of Sciences, O. Gonchar Str. 55-b, 252054 Kiev, Ukraine,
Elias Samankassou*
Affiliation:
Université de Fribourg, Département de Géosciences, Géologie et Paléontologie, ch. du Musée 6, CH-1700 Fribourg, Switzerland, ;
Katsumi Ueno
Affiliation:
Department of Earth System Science, Faculty of Science, Fukuoka University, Fukuoka 814-0180, Japan,
*
Corresponding author: Elias Samankassou, Université de Fribourg, Département de Géosciences, Géologie et Paléontologie, ch. du Musée 6, CH-1700 Fribourg, Switzerland, <[email protected]>

Abstract

The mid-Moscovian Izvarino section, Donets Basin, eastern Ukraine, exhibits a complete sedimentological record of siliciclastics (sandstones, siltstones, and calcareous shales) with limestone intercalations and, rarely, coal seams. A multidisciplinary study including microfacies analysis, systematic paleontology (conodonts, fusulinoideans, and ostracodes), biostratigraphy, and paleoecology was focused on the limestones, from limestone L4 through limestone M1, and the adjacent marine shales. Based on sedimentology and fossil associations, the cyclic sediments of the Izvarino section were interpreted as entirely marine deposits of open- and shallow-marine, nearshore and offshore environments with variable terrigenous input.

The well-preserved ostracode faunas are dominated by representatives of the families Amphissitidae, Hollinellidae, Healdiidae, Cavellinidae, and Paraparchitidae. The total fauna is 18 species, of which four are new: Hollinella (Hollinella) granuloba Fohrer, n. sp., Hollinella (Praehollinella) kamenka Fohrer, n. sp., Jordanites krasnodonensis Fohrer, n. sp., and Asturiella donbassica Fohrer, n. sp. The conodont fauna includes 21 species belonging to nine genera and includes one new species: Idiognathodus izvaricus Nemyrovska, n. sp. The conodont faunas are dominated by idiognathodontids. Representatives of Diplognathodus and Neognathodus play a subordinate role. A total of 56 fusulinoidean species referable to 20 genera has been identified; one is new: Eostaffella brazhnikovae Ueno, n. sp.

Conodont and fusulinoidean biostratigraphy led to surprising differences in the age assignment of the Izvarino section and its correlation with the nearby Moscow Basin, Russia. The interval studied is lower Kashirian (Tsninskaya) to middle Kashirian (Narskaya), according to conodonts. It extends to the base of the Podolskian, however, according to fusulinoideans. This discrepancy is possibly related to problems in correlation of the type sections in the Moscow Basin. It calls for reexamination of the mid-Moscovian boundary interval and shows the limits of interbasinal correlations based on a single fossil group.

Type
Research Article
Copyright
Copyright © 2007, The Paleontological Society 

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References

Abich, H. 1859. Vergleichende Grundzüge der Geologie des Kaukasus, wie der armenischen und nordpersischen Gebirge. Mémoires de l'Académie Impériale des Sciences de Saint-Pétersbourg, Sixième Série, Sciences mathématiques, physiques et naturelles, Tome 9, Première partie; Sciences mathématiques et physiques, Tome, 7:359534.Google Scholar
Aizenverg, D. E., Brazhnikova, N. E., and Potievskaya, P. D. 1968. Biostratigraficheskoe Raschlenie Kamennougol'nykh Otlozheniy Yuzhnogo Sklona Voronezhskogo Massiva (Starobel'sko-Millerovskaya Monoklinal'). Akademiya Nauk Ukrainskoy SSR, Institut Geologicheskikh Nauk, Naukova Dumka, Kiev, 151 p. (In Russian) Google Scholar
Aizenverg, D. E., Lagutina, V. V., Levenshtein, M. L., and Popov, V. S. (eds.). 1975. Field excursion guide book for the Donets Basin. VIII International Congress on Carboniferous Stratigraphy and Geology, Izdatelstvo “Nauka,” Moscow, 360 p.Google Scholar
Aizenverg, D. E., Astakhova, T. V., Berchenko, O. I., Brazhnikova, N. E., Vdovenko, M. V., Dunaeva, N. N., Zernetskaya, N. V., Poletaev, V. I., and Sergeeva, M. T. 1983. Verkhneserpukhovskiy Pod'yarus Donetskogo Basseyna (Paleontologicheskaya Kharakteristika). Akademiya Nauk Ukrainskoy SSR, Institut Geologicheskikh Nauk, Naukova Dumka, Kiev, 163 p. (In Russian with English summary) Google Scholar
Alekseev, A. S. 2001. Glava 5. Korrelyatsiya moskovskogo yarusa, p. 215228. In Makhlina, M. Kh., Alekseev, A. S., Goreva, N. V., Isakova, T. N., and Drutskoy, S. N. (eds.), Sredniy Karbon Moskovskoy Sineklizy (Yuzhnaya Chast'), Tom 1. Stratigrafiya. Paleontologicheskiy Institut, RAN, Moskva. (In Russian) Google Scholar
Alekseev, A. S. and Gereltsetseg, L. 1996. Lower Moscovian of Central Russia. VI European Conodont Symposium (ECOS VI), Warszawa, abstracts, p. 5.Google Scholar
Alekseev, A. S., Barskov, I. S., and Kononova, L. I. 1994. Stratigrafiya nizhnemoskovskogo pod'yarusa (sredniy karbon) tsentralnoj Rossii po konodontam. Vestnik Moscovskogo Universiteta, Seriya Geologicheskaya, 2:3346. (In Russian) Google Scholar
Altiner, D. 1981. Recherches stratigraphiques et micropaléontologiques dans le Taurus Oriental au NW de Pinarbasi (Turquie). Université de Genève, Section de Sciences de la Terre, Thèse No. 2005, 450 p.Google Scholar
Amerom, H. W. J. van, Bless, M. J. M., and Winkler Prins, C. F. 1970. Some paleontological and stratigraphical aspects of the Upper Carboniferous Sama Formation (Asturias, Spain). Mededelingen Rijks Geologische Dienst, nieuwe serie, 21:979.Google Scholar
Armstrong, A. K. and Mamet, B. L. 1977. Carboniferous microfacies, microfossils, and corals, Lisburne Group, Arctic Alaska. U.S. Geological Survey Professional Paper 849:1144.Google Scholar
Baird, W. 1850. Description of several new species of Entomostraca. Proceedings of the Zoological Society of London, 18:254257.Google Scholar
Baranova, D. V. and Kabanov, P. B. 2003. Facies distribution of fusulinid genera in the Myachkovian (Upper Carboniferous, Upper Moscovian) of southern Moscow region. Rivista Italiana di Paleontologia e Stratigrafia, 109:225239.Google Scholar
Barskov, I. S. and Alekseev, A. S. 1975. Konodonty srednego i verkhnego karbona Podmoskov'ya. Izvestiya Akademii Nauk SSSR, Seriya Geologicheskaya, 6:8499. (In Russian) Google Scholar
Barskov, I. S., Alekseev, A. S., Kononova, L. I., and Migdisova, A. V. 1987. Opredelitel' konodontov verkhnego devona i karbona. Izdatelstvo Moscovskogo Universiteta, Moskva, 144 p. (In Russian) Google Scholar
Barskov, I. S., Alekseev, A. S., Goreva, N. V., Kononova, L. I., and Migdisova, A. V. 1984. Zonalnaya shkala karbona Vostochno-Evropeiskoj Platformy po konodontam, p. 143151. In Menner, V. V. (ed.), Paleontologicheskaya kharakteristika stratotipicheskikh i opornykh razrezov karbona Moskovskoj sineklisy. Izdatelstvo Moskovskogo Universiteta (MGU), Moskva. (In Russian) Google Scholar
Becker, G. 1981. Ostracoda aus cephalopoden-führendem Oberdevon im Kantabrischen Gebirge (N-Spanien). 1. Hollinacea, Primitiopsacea, Kirkbyacea, Healdiacea und Bairdiocypridacea. Palaeontographica Abteilung A, 173:163.Google Scholar
Becker, G. 1992. Flachwasser-Ostracoden aus dem hohen Westfal Asturiens (Kantabrisches Gebirge, N-Spanien). 2. Podocopida. Senckenbergiana lethaea, 71:383425.Google Scholar
Becker, G. 1997. The superfamily Kirkbyacea Ulrich & Bassler, 1906. 2. Family Amphissitidae Knight, 1928. Neues Jahrbuch für Geologie und Paläontologie, Abhandlungen, 204:127140.CrossRefGoogle Scholar
Becker, G. 2001. The superfamily Bairdiacea Sars, 1888. 1. Family Bairdiidae Sars, 1888 (Palaeozoic members only). Contributions to Palaeozoic Ostracod Classification [POC], No. 18. Neues Jahrbuch für Geologie und Paläontologie, Abhandlungen, 220:267294.Google Scholar
Becker, G. 2002. Palaeozoic Ostracoda: The standard classification scheme. Contributions to Palaeozoic Ostracod Classification [POC], No. 24. Neues Jahrbuch für Geologie und Paläontologie, Abhandlungen, 226:165228.CrossRefGoogle Scholar
Becker, G., Bless, M. J. M., and Sánchez de Posada, L. C. 1977. Ostracoden, p. 7997. In Requadt, H., Becker, G., Bless, M. J. M., Eickhoff, G., and Sánchez de Posada, L. C., Mikrofaunen aus dem Westfal der spanischen Westpyrenäen (Ostracoda, Conodonta, Foraminifera). Neues Jahrbuch für Geologie und Paläontologie, Abhandlungen, 155:65–107.Google Scholar
Bender, K. P. 1980. Lower and Middle Pennsylvanian conodonts from the Canadian Arctic Archipelago. Geological Survey of Canada, Paper 79–15, 29 p.CrossRefGoogle Scholar
Bensh, F. R. 1969. Stratigrafiya i Foraminifery Kamennougol'nykh Otlozheniy Yugo-Zapadnykh Otrogov i Yuzhnogo Sklona Gissarskogo Khrebta. Akademiya Nauk Uzbekskoy SSR, Institut Geologii i Geofiziki im. Kh. M. Abdullaeva, Izdatel'stvo FAN Uzbekskoy SSR, Tashkent, 174 p. (In Russian) Google Scholar
Bird, K. L. and Mamet, B. L. 1983. Carboniferous foraminifer Mediocris, first occurrence in northern Alaska. Journal of Foraminiferal Research, 13:134143.Google Scholar
Blaszyk, J. and Natusiewicz, D. 1973. Carboniferous ostracods from the borings in northwestern Poland. Acta Palaeontologica Polonica, 18:117151.Google Scholar
Bless, M. J. M. 1965. On two new species of marine ostracodes in the Carboniferous of Asturias, Spain. Leidse Geologische Mededelingen, 33:177182.Google Scholar
Bless, M. J. M. 1967. On the marine beds of some cyclothems in the central Carboniferous basin of Asturias with especial reference to their ostracode fauna. Notas y Comunicaciones del Instituto Geológico y Minero de España, 99–100:91134.Google Scholar
Bless, M. J. M. 1968. On two hollinid ostracode genera from the Upper Carboniferous of northwestern Spain. Leidse Geologische Mededelingen, 43:157212.Google Scholar
Bless, M. J. M. 1969. On a case of dimorphism in the last juvenile stage of a hollinid ostracode from the Namurian B-C of the La Camocha mine (Gijon, N. Spain). Breviora Geologica Astúrica, 13:3138.Google Scholar
Bless, M. J. M. 1970. Systematic description of Ostracoda, p. 2739. In van Amerom, H. W. J., Bless, M. J. M., and Winkler Prins, C. F., Some paleontological and stratigraphical aspects of the Upper Carboniferous Sama Formation (Asturias, Spain). Mededelingen Rijks Geologische Dienst, nieuwe serie, 21:9–79.Google Scholar
Bless, M. J. M. 1974. Ostracods from Croft's End Marine Band (Base of Westphalian C) of the Bristol District. Bulletin Geological Survey Great Britain, 47:3953.Google Scholar
Bless, M. J. M. 1983. Late Devonian and Carboniferous ostracode assemblages and their relationship to the depositional environment. Bulletin de la Société beige de Géologie, 92:3153.Google Scholar
Bless, M. J. M. and Jordan, H. 1971. Classification of palaeocopid ostracodes belonging to the families Ctenoloculinidae, Hollinidae and Hollinellidae. Bulletin du Centre de Recherches Pau-SNPA, 5:869890.Google Scholar
Bless, M. J. M. and Jordan, H. 1972. Ostracodes of the family Hollinellidae. Mededelingen Rijks Geologische Dienst, serie C, 3/1:1155.Google Scholar
Bless, M. J. M., Jordan, H., and Michel, M. P. 1969. Ostracodes from the Aegir Marine Band (basis Westphalian C) of South Limburg (The Netherlands). Mededelingen Rijks Geologische Dienst, nieuwe serie, 20:1949.Google Scholar
Bless, M. J. M., Streel, M., and Becker, G. 1988. Distribution and paleoenvironment of Devonian to Permian ostracode assemblages in Belgium with reference to some late Famennian to Permian marine nearshore to “brackish-water” assemblages dated by miospores. Annales de la Société géologique de Belgique, 110–1987:347362.Google Scholar
Bogush, O. I. 1963. Foraminifery i Stratigrafiya Srednego i Verkhnego Karbona Vostochnoy Chasti Alayskogo Khrebta. Akademiya Nauk SSSR, Sibirskoe Otdelenie, Institut Geologii i Geofiziki, Izdatel'stvo Akademii Nauk SSSR, Moskva, 132 p. (In Russian) Google Scholar
Bogush, O. I. 1985. Foraminifery i stratigrafiya nizhnego karbona Zapadno-Sibirskoy plity, p. 4968. In Dubatolov, V. N. and Kanygin, A. V. (eds.), Biostratigrafiya Paleozoya Zapadnoy Sibili, Akademiya Nauk SSSR, Sibirskoe Otdelenie, Trudy Instituta Geologii i Geofiziki, 619. (In Russian) Google Scholar
Bogush, O. I. and Yuferev, O. V. 1962. Foraminifery i Stratigrafiya Kamennougol'nykh Otlozheniy Karatau i Talasskogo Alatau. Akademiya Nauk SSSR, Sibirskoe Otdelenie, Institut Geologii i Geofiziki, Izdatel'stvo Akademii Nauk SSSR, Moskva, 234 p. (In Russian) Google Scholar
Bogush, O. I. and Yuferev, O. V. 1976. Protozoa, p. 5258. In Duvatolov, V. N. (ed.), Pribalkhashch'e Perekhodnaya Zona Biogeograficheskikh Poyasov Pozdnego Karbona. Akademiya Nauk SSSR, Sibirskoe Otdelenie, Institut Geologii i Geofiziki, Trudy, 285. (In Russian) Google Scholar
Boogaard, M. van den, and Bless, M. J. M. 1985. Some conodont faunas from the Aegiranum Marine Band. Paleontology. Proceeding of the Koninklijke Nederlandse Academy van Wetenschappen, B, 88(2):133154.Google Scholar
Bradfield, H. H. 1935. Pennsylvanian Ostracoda of the Ardmore Basin, Oklahoma. Bulletins of American Paleontology, 22:1173.Google Scholar
Brady, G. S. 1867. A synopsis of the recent British ostracoda. The Intellectual Observer, 12:110130.Google Scholar
Branson, E. B. and Mehl, M. G. 1941. New and little known Carboniferous conodont genera. Journal of Paleontology, 15:97106.Google Scholar
Brazhnikova, N. 1939a. Materiali do vivchennya foraminifer Tsentral'nogo rayonu Donbassa. Akademiya Nauk Ukrains'koy SSR, Institut Geologii, Trudy Institutu Geologii po Donbasu, no number: 145165. (In Ukrainian with Russian and English summary) Google Scholar
Brazhnikova, N. 1939b. Do vivcheniya foraminifer Tsentral'nogo rayonu Donbasa (Sviti C3 is, C3 av i nizi araukaritovoy tovshchi). Geologichniy Zhurnal, 6:245303. (In Ukrainian with Russian and English summary)Google Scholar
Brazhnikova, N. 1951. Materialy k izucheniyu fauny foraminifer zapadnoy okrainy Donbassa. Akademiya Nauk Ukrains'koy SSR, Trudy Instituta Geologicheskikh Nauk, Seriya Stratigrafii i Paleontologii, 5:73106. (In Russian) Google Scholar
Brazhnikova, N. E. and Potievs'ka, P. D. 1948. Naslidki vivchennya foraminifer za materialami sverdlovin zakhidnoy okrayni Donbasu. Akademiya Nauk Ukrainskoy SSR, Institut Geologichnikh Nauk, Zbirnik prats' z paleonyologiy ta stratigrafiy, 2(1):76103. (In Ukrainian) Google Scholar
Brazhnikova, N. E. and Vdovenko, M. V. 1973. Rann'ovizeys'ki Foraminiferi Ukraini. Vidavnitstvo Naukova Dumka, Kiev, 296 p. (In Ukrainian) Google Scholar
Brazhnikova, N. E., Ishchenko, A. M., Ishchenko, T. A., Novik, E. O., and Shul'Ga, P. L. 1956. Fauna i flora kamennougol'nykh otlozheniy Galitsiysko-Bolynskoy vpadiny. Akademiya Nauk Ukrains'koy SSR, Trudy Instituta Geologicheskikh Nauk, Seriya Stratigrafii i Paleontologii, 10:1410. (In Ukrainian)Google Scholar
Brazhnikova, N. E., Vakarchuk, G. I., Vdovenko, M. V., Vinnichenko, L. V., Karpova, M. A., Kolomiets, Ya. I., Potievskaya, P. D., Rostovtseva, L. F., and Shevchenko, G. D. 1967. Mikrofaunisticheskie Markiruyushchie Gorizonty Kamennougol'nykh i Permskikh Otlozheniy Dneprovsko-Donetskoy Vpadiny. Naukova Dumka, Kiev, 224 p. (In Russian) Google Scholar
Brenckle, P. L. 2005. A compendium of Upper Devonian-Carboniferous type foraminifers from the former Soviet Union. Cushman Foundation for Foraminiferal Research, Special Publication 38:1153.Google Scholar
Brenckle, P. L. and Milkina, N. V. 2003. Foraminiferal timing of carbonate deposition on the Late Devonian (Famennian)-Middle Pennsylvanian (Bashkirian) Tengiz Platform, Kazakhstan. Rivista Italiana di Paleontologia e Stratigrafia, 109:131158.Google Scholar
Brondos, M. D. and Kaesler, R. L. 1976. Diversity of assemblages of Late Paleozoic Ostracoda, p. 213234. In Scott, R. and West, R. (eds.), Structure and Classification of Paleocommunities. Hutchinson and Ross, Stroudsburg, Pennsylvania.Google Scholar
Burke, C. D. 1985. Paleoecologic interpretation of ostracoda from the Skelley Member, Conemaugh Group (Pennsylvanian), southeastern Ohio. Journal of Paleontology, 59:839848.Google Scholar
Chang, L. H. (Zhang, L. X.). 1960. Fusulinids of Qilianshan, p. 3352. In Nanjing Institute of Geology and Palaeontology, Academia Sinica, Institute of Geology, Academia Sinica, and Beijing Geological College (eds.), Geology of Qilianshan. Science Publishing House, Beijing. (In Chinese) Google Scholar
Chang, L. H. (Zhang, L. X.). 1961. Some Middle Carboniferous fusulinids from western K'unlun, Sinkiang. Acta Palaeontologica Sinica, 9:151158. (In Chinese with English summary) Google Scholar
Chen, G. B., Yang, C. F., Wang, X. D., and Zhang, L. X. 1991. On the Boundary Between Carboniferous and Permian and the Fusulinids of the Boundary Stratigraphy in Yunnan. Yunnan Science and Technology Press, Kunming, 136 p. (In Chinese with English summary and description of new species) Google Scholar
Chen, G. X. 1984. Protozoa, p. 1273. In Regional Geological Surveying Team of Hubei (ed.), The Palaeontological Atlas of Hubei Provinve. Hubei Science and Technology Press, Wuhan. (In Chinese) Google Scholar
Chen, J. R. and Yang, Z. R. 1978. Fusulinida, p. 17123. In Xinan Institute of Geological Sciences (ed.), Paleontological Atlas of Southwest China, Sichuan. Volume 2. Geological Publishing House, Beijing. (In Chinese) Google Scholar
Chen, S. (Chen, X.).1934a. Fusulinidae of South China, Pt. 1, Palaeontologia Sinica, series B, 4(2):1185.Google Scholar
Chen, S. (Chen, X.). 1934b. Fusulinidae of the Huanglung and Maping Limestones, Kwangsi. Memoirs of the National Research Institute of Geology, 14:3355.Google Scholar
Chen, X. and Wang, J. H. 1983. The fusulinids of the Maping Limestone of the Upper Carboniferous from Yishan, Guangxi. Palaeontologia Sinica, new series B, No. 19 (Whole Number 164):1139. (In Chinese with English summary) Google Scholar
Cheong, C. H. 1971. Stratigraphy and paleontology of the Danyang Coalfield, N. Chungcheong-do, Korea. The Journal of the Geological Society of Korea, 7(2):6392. (In Korean with English abstract) Google Scholar
Cheong, C. H. 1973. A paleontological study of the fusulinids from the Samcheog Coalfield, Korea. The Journal of the Geological Society of Korea, 9(2):4788. (In Korean with English abstract) Google Scholar
Cheong, C. H. 1974. Some new forms of Fusulininae, including a new genus Xenostaffella, from Korea. The Journal of the Geological Society of Korea, 10(2):5988.Google Scholar
Cheong, C. H. 1979. Development of the Pseudostaffella-Neostaffella-Xenostaffella line found in South Korea, p. 466474. In Sutherland, P. K. and Manger, W. L. (eds.), Neuvième Congrès International de Stratigraphie et de Géologie du Carbonifère, Compte Rendu, 2 (Biostratigraphy). Southern Illinois University Press, Carbondale.Google Scholar
Cheong, C. H. and Park, Y. A. 1977. Fusulinids and depositional conditions of the marine sediment (Carboniferous) of the Yongweol Coalfield, Korea. The Journal of the Geological Society of Korea, 13(3):151178. (In Korean with English abstract) Google Scholar
Chernova, E. I. 1961. Biostratigrafiya (po foraminiferam) srednekamennougol'nykh otlozheniy Saratovskogo pravoberezh'ya. p. 261286. In Dalmatskaya, I. I., Latskova, V. E., Orlova, I. N., Rauser-Chernousova, D. M., Reitlinger, E. A., Safonova, T. P., Semikhatova, E. N., and Chernova, E. I. (eds.), Regional'naya Stratigrafiya SSSR, Tom 5, Stratigrafiya Srednekamennougol'nykh Otlozheniy Tsentral'noy i Vostochnoy Chasti Russkoy Platformy (Na Osnove Izucheniya Foraminifer), 2. Povolzh'e i Prikam'e. Akademiya Nauk SSSR, Geologicheskiy Institut, Izdatel'stvo Akademii Nauk SSSR, Moskva. (In Russian) Google Scholar
Christopher, C. C., Hoare, R. D., and Sturgeon, M. T. 1990. Pennsylvanian hollinacean and kirkbyacean ostracodes from the Appalachian Basin. Journal of Paleontology, 64:967987.Google Scholar
Chuvashov, B. I., Ivanova, R. M., and Kolchina, A. N. 1984. Verkhniy Paleozoy Vostochnogo Sklona Urala (Stratigrafiya i Geologicheskaya Istoriya). Akademiya Nauk SSSR, Ural'skiy Nauchnyy Tsentr, Sverdlovsk, 229 p. (In Russian) Google Scholar
Clark, D. L. 1972. Early Permian crisis and its bearing on Permo-Triassic conodont taxonomy. Geologica et Palaeontologica, SB, 1:147158.Google Scholar
Colani, M. 1924. Nouvelle contribution à l'étude des fusulinidés de l'Extrême-Orient. Mémoires du Service Géologique de l'Indochine, 11(1):1191.Google Scholar
Cooper, C. L. 1941. Chester ostracodes of Illinois. Illinois Geological Survey, Report of Investigations, 77:1101.Google Scholar
Cooper, C. L. 1946. Pennsylvanian ostracodes of Illinois. Illinois Geological Survey Bulletin, 70:1177.Google Scholar
Cordell, R. J. 1952. Ostracodes from the Upper Pennsylvanian of Missouri, Pt. I, The family Bairdiidae. Journal of Paleontology, 26:74112.Google Scholar
Coryell, H. N. 1928. Some new Pennsylvanian Ostracoda. Journal of Paleontology, 2:8794.Google Scholar
Coryell, H. N. and Billings, G. D. 1932. Pennsylvanian Ostracoda of the Wayland Shale of Texas. American Midland Naturalist, 13:170189.Google Scholar
Coryell, H. N. and Osorio, G. A. 1932. Pennsylvanian Ostracoda—An ostracoda fauna of the Nowata Shale. American Midland Naturalist, 13:2541.Google Scholar
Cushman, J. A. 1933. Foraminifera, their classification and economic use. Special Publications, Cushman Laboratory for Foraminiferal Research, No. 4:1349.Google Scholar
Da, Y. T. and Sun, Q. L. 1983. Protozoa, p. 7113. In Regional Geology Surveying Team of Xinjiang (ed.), Paleontological Atlas of Northwest China, Xinjiang Weiwuer Autonomous Region. Volume 2. Geological Publishing House, Beijing. (In Chinese) Google Scholar
Dalmatskaya, I. I. 1951. Novyy vid fuzulinid iz nizhney chansti srednekamennougol'nykh otlozheniy Russkoy platformy. Moskovskogo Obshchestva Ispitatelej Prirody, 1:194196. (In Russian) Google Scholar
Deleau, P. and Marie, P. 1959. Les fusulinidés du Westphalien C du basin d'Abadla et quelques autres foraminifèrs du Carbonifère Algérien (Région de Colomb-Béchar). Publication du Service de la Carte Géologique de l'Algerie (Nouvelle Série) Bulletin, 25:43160.Google Scholar
Delo, D. M. 1930. Some Upper Carboniferous ostracoda from the Shale Basin of western Texas. Journal of Paleontology, 4:152178.Google Scholar
Deprat, J. 1912. Étude des Fusulinidés de Chine et d'Indochine et classification des calcaires à Fusulines. Mémoires du Service Géologique de l'Indochine, 1(3):177.Google Scholar
Dewey, C. P. 1987. Palaeoecology of a hypersaline Carboniferous ostracod fauna. Journal of Micropalaeontology, 6:2933.Google Scholar
Dewey, C. P. 1988. Lower Carboniferous ostracode assemblages from Nova Scotia, p. 685696. In Hanai, T., Ikeya, N., and Ishizaki, K. (eds.), Evolutionary Biology of Ostracoda. Elsevier, Amsterdam.Google Scholar
Douvillé, H. 1907. Les calcaires à fusulines de l'Indo-Chine. Bulletin de la Société Géologique de France, série 4, 6:576587.Google Scholar
Dunbar, C. O. and Condra, G. E. 1927. The Fusulinidae of the Pennsylvanian System in Nebraska. Nebraska Geological Survey Bulletin, second series, 2:1135.Google Scholar
Dunbar, C. O. and Skinner, J. W. 1937. The geology of Texas. Vol. III. Pt. 2. Permian Fusulinidae of Texas. The University of Texas Bulletin, No. 3701:519822.Google Scholar
Dunn, D. L. 1966. New Pennsylvanian conodonts from southwestern United States. Journal of Paleontology, 40:12941303.Google Scholar
Dunn, D. L. 1970. Middle Carboniferous conodonts from western United States and phylogeny of the platform group. Journal of Paleontology, 44:312342.Google Scholar
Dutkevich, G. A. 1934a. O nekotorykh novykh vidakh fuzulinid iz verkhnego i srednego karbona Verkhne-Chusovskikh Gorodkov na r. Chusovoy (Zapadnyy sklon srednego Urala). Trudy Neftyanogo Geologo-Razvedochnogo Instituta, seriya A, 36:198. (In Russian with English summary and description of new species)Google Scholar
Dutkevich, G. A. 1934b. K stratigrafii srednego karbona na Urale. Trudy Neftyanogo Geologo-Razvedochnogo Instituta, seriya A, 55:141. (In Russian with French summary)Google Scholar
Dutkevich, G. A. and Khavakov, A. V. 1934. Permskie otlozheniya vostochnogo Pamira i paleogeografiya verkhnego Paleozoya tsentral'noy Azii. Akademiya Nauk Soyuza Sovetskikh Sotsialisticheskikh Respblik, Trudy Tadzhikskogo Kompleksnogo Ekspeditsiya, 1932, Geologiya Pamira, 8:1112. (In Russian) Google Scholar
Dzhenchuraeva, A. V. 1979. Stratigrafiya i Foraminifer Srednekamennougol'nykh Otlozheniy Severnykh Sklonov Turkestano-Alaya. Akademiya Nauk Kirgizskoy SSR, Ordena Trudovogo Krasnogo Znameni, Institut Geologii im. M. M. Adysheva, Ministerstvo Geologii SSSR, Upravlenie Geologii Kirgizskoy SSR, ILIM, Frunze, 184 p. (In Russian) Google Scholar
Dzhenchuraeva, A. V. 1993. Stratigrafiya i Foraminifery Verkhnego Paleozoya Prioseboy Chasti Turkestano-Alaya. Akademiya Nauk Respubliki Kyrgyzstan, Ordena Trulovogo Krasnogo Znameni, Institut Geologii im. M. M. Adysheva po $ltKirgizgeologiya$gt, ILIM, Bishkek, 145 p. (In Russian) Google Scholar
Egorov, V. G. 1950. Ostrakody franskogo yarusa Russkoj platformy. Kloedenellidae. Moskva, 175 p. (In Russian) Google Scholar
Ehrenberg, C. G. 1854. Mikrogeologie. Leopold Voss, Leipzig, 374 p.Google Scholar
Einor, O. L. (ed.). 1996. The former USSR, p. 13407. In Wagner, R. H., Winkler Prins, C. F., and Granados, L. F. (eds.), Carboniferous of the world, Pt. III, The former USSR, Mongolia, Middle Eastern Platform, Afghanistan, & Iran. IUGS Publication no. 33, Instituto Tecnológico Geominero de España, Madrid, and Nationaal Natuurhistorisch Museum, Leiden.Google Scholar
Ektova, L. A. 1976. Materialy k Obosnovaniyu yarusnogo Deleniya srednego otdela karbona. Ministerstvo Geologii SSSR, Trudy Vsesoyuznyy Ordena Lenina Nauchno-Issledovatel'skiy Geologicheskiy Institut (VSEGEI), novaya seriya, 247 (Stratigrafiya i Paleontologiya Karbona):70111. (In Russian) Google Scholar
Ellison, S. D. 1941. Revision of Pennsylvanian conodonts. Journal of Paleontology, 15:107143.Google Scholar
Ershova, T. V. 1968. K mikrofaunisticheskoj kharakteristike verkhnevizejskikh otlozhenij (podzony C1 vg2) severo-zapadnoj chasti dneprovsko-donetskoj vpadiny. Paleontologicheskij Sbornik Lvovskogo Universiteta, 5:8795. (In Russian) Google Scholar
Ershova, T. V. 1969. Ostrakody Moskovskogo Yarusa nekotorykh rajonov Dneprovko-Donetskoj vpadny. Trudy Ukrainskij Nauchnij-Issleddovatelskij Geologorazvedochnij Neftyanoy Instituta, 19:6780.Google Scholar
Etheridge, R. 1873. Notes on certain genera and species mentioned in the foregoing lists. Scotland Geological Survey, Memoir, Explanation Sheet 23, Appendix 2:93107.Google Scholar
Fernandez Lopez, M. G. and Sánchez de Posada, L. C. 1987. Hollinomorpha y Kirkbyocopina (Ostracoda) del Bashkiriense del N. de León (Cordillera Cantábrica, NW de España). Revista Española de Micropaleontología, 19:465485.Google Scholar
Fohrer, B. 1991. Verkieselte Flachwasser-Ostracoden und ihre Begleitfauna und -flora aus dem Oberkarbon der Karnischen Alpen (Naβfeld-Region, Kärnten, Österreich). Abhandlungen der Geologischen Bundesanstalt, 46, 107 p.Google Scholar
Fohrer, B. 1997. Ostracoden aus dem Oberkarbon und Unterperm der Karnischen Alpen (Österreich): Systematik, Biostratigraphie und Palökologie. Jahrbuch der Geologischen Bundesanstalt, 140:99191.Google Scholar
Galloway, J. J. 1933. A Manual of Foraminifera. The Principia Press, Bloomington, Indiana, USA, 483 p.Google Scholar
Galloway, J. J. and Harlton, B. H. 1928. Some Pennsylvanian foraminifera of Oklahoma with special reference to the genus Orbias . Journal of Paleontology, 2:338357.Google Scholar
Ganelina, R. A. 1951. Eoshtaffelly i millerelly viseyskogo i namyurskogo yarusov nizhnego karbona zapadnogo kryla Podmoskovnoy Kotloviny. Trudy Vsesoyuznogo Neftyanogo Nauchno-Issledovatel'skogo Geologo-Razvedochnogo Instituta (VNIGRI), novaya seriya, 56:179210. (In Russian) Google Scholar
Gao, L. D., Wang, Z. J., and Wu, X. H. 1983. The middle Carboniferous of China, p. 5686. In Wagner, R. H., Winkler Prins, C. F., and Granados, L. F. (eds.), The Carboniferous of the World I. China, Korea, Japan & S. E. Asia (IUGS Publication No. 16). Instituto Geològico y Minero de España and Empresa Nacional Adaro de Investigaciones Mineras, s. a., Madrid.Google Scholar
Geinitz, H. B. 1866. Carbonformation und Dyas in Nebraska. Verhandlungen der kaiserlichen leopoldino-carolinischen deutschen Akademie der Naturforscher, 33, 91 p.Google Scholar
Gereltsetseg, L. 1996. Biostratigrafiya nizhnemoskovskogo podyarusa v razreze Yambirno (Ryazanskaya oblast'). Bulleten' Moskovskogo obshchestwa ispytatelej prirody (MOIP), Otdeleniye Geologii, 71(3):108109. (In Russian) Google Scholar
Gibshman, N. B. and Akhmetshina, L. Z. 1990. Micropaleon basis for determination of the Mid-Carboniferous boundary in the North Caspian Syneclise, U.S.S.R., p. 273295. In Brenckle, P. L. and Manger, W. L. (eds.), Intercontinental Correlation and Division of the Carboniferous System. Courier Forschungsinstitut Senckenberg, 130.Google Scholar
Ginkel, A. C. van. 1965. Carboniferous fusulinids from the Cantabrian Mountains (Spain). Leidse Geologische Mededelingen, 34:1225.Google Scholar
Ginkel, A. C. van. 1983. Carboniferous fusulinids in a coastal section near Pendueles (Asturias, Spain). Leidse Geologische Mededelingen, 52:193263.Google Scholar
Ginkel, A. C. van. 1986a. Carboniferous fusulinids of the Qued el Hamar Formation (Colomb-Béchar, Algeria). Proceedings of the Koninklijke Nederlandse Akademie van Wetenschappen, series B, 89:201241.Google Scholar
Ginkel, A. C. van. 1986b. Fusulinid foraminafera of Westphalian C age near the top of the Kenadza strata (Colomb-Béchar, Algeria). Proceedings of the Koninklijke Nederlandse Akademie van Wetenschappen, series B, 89:313335.Google Scholar
Ginkel, A. C. van. 1987. Systematics and biostratigraphy of fusulinids of the Lena Formation (Carboniferous) near Puebla de Lillo (León, NW Spain). Proceedings of the Koninklijke Nederlandse Akademie van Wetenschappen, series B, 90:189276.Google Scholar
Ginkel, A. C. van. 1989. Carboniferous fusulinids from the upper part of the Hassi Kerma Formation (Colomb-Béchar, Algeria). Proceedings of the Koninklijke Nederlandse Akademie van Wetenschappen, series B, 92:313362.Google Scholar
Ginkel, A. C. van. 2002. Lower Bashkirian fusulinoideans from the upper part of the Tagnana Formation (Carboniferous, NW Algeria). Revista Española de Paleontología, 17:3772.Google Scholar
Girty, G. H. 1910. New genera and species of Carboniferous fossils from the Fayetteville Shale of Arkansas. Annals of the New York Academy of Science, 20:189238.Google Scholar
Gorak, S. V. 1958. Ostrakody deyakikh gorizontiv serednogo i verkhnogo Karbonu Donetskogo Baseinu ta umovi ikh isnuvannya. Akademiya Nauk Ukrainskoj SSR, Institut Geologichnikh Nauk, Seriya stratigrafii ta paleontologii, 28:175. (In Russian) Google Scholar
Gorak, S. V. 1964. Verkhnevizejskie i nizhnenamyurskie ostrakody nekotorykh rajonov severo-zapadnogo sektora bolshogo donbassa. Akademiya Nauk Ukrainskoj SSR, Trudy Instituta Geologicheskikh Nauk, Seriya stratigrafii i paleontologii, 48:154204. (In Russian) Google Scholar
Gorak, S. V. 1966. Ostrakody, p. 90115. In Aizenverg, D. E., Fauna nizov Turae (zony C1 ta) Donetskogo Bassejna. Akademiya Nauk Ukrainskoj SSR, Institut Geologicheskikh Nauk, Naukova Dumka, Kiev.Google Scholar
Gorak, S. V. 1967. Ostrakody Vizejskoj chasti svity C1 1(A) Donetskogo Bassejna, p. 4385. In Dunaeva, N. N., Fauna nizhnevizejckikh otlozhenij bolshogo Donbassa. Akademiya Nauk Ukrainskoj SSR, Institut Geologicheskikh Nauk, Naukova Dumka, Kiev. Google Scholar
Goreva, N. V. 1984. Konodonty moskovskogo yarusa Moskovskoy sineklizy, p. 44122. In Menner, V. V. (ed.), Paleontologicheskaya kharakteristika stratotipicheskikh i opornykh razrezov karbona Moskovskoy sineklizy. Moscow University Press, Moscow. (In Russian) Google Scholar
Gramm, M. N. 1985. The muscle scar in cavellinids and its importance for the phylogeny of platycope ostracodes. Lethaia, 18:3952.Google Scholar
Grayson, R. C. 1984. Morrowan and Atokan (Pennsylvanian) conodonts from the north-eastern margin of the Arbuckle Mountains, southern Oklahoma, p. 4146. In Southerland, P. K. and Manger, W. L. (eds.), The Atokan Series (Pennsylvanian) and its boundaries – A symposium. Oklahoma Geological Survey Bulletin 136.Google Scholar
Groves, J. R. 1988. Calcareous foraminifers from the Bashkirian stratotype (Middle Carboniferous, South Urals) and their significance for intercontinental correlations and the evolution of the Fusulinidae. Journal of Paleontology, 62:368399.Google Scholar
Groves, J. R. 1991. Fusulinacean biostratigraphy of the Marble Falls Limestone (Pennsylvanian), western Llano region, central Texas. Journal of Foraminiferal Research, 21:6795.Google Scholar
Groves, J. R., Nassichuk, W. W., Rui, L., and Pinard, S. 1994. Middle Carboniferous fusulinacean biostratigraphy, northern Ellesmere Island (Sverdrup Basin, Canadian Arctic Archipelago). Geological Survey of Canada Bulletin, 469:155.Google Scholar
Grozdilova, L. P. and Lebedeva, N. S. 1950. Nekotorye vidy shtaffell srednekammenougol'nykh otlozheniy zapadnogo sklona Urala. Trudy Vsesoyuznogo Neftyanogo Nauchno-Issledovatel'skogo Geologo-Razvedochnogo Instituta (VNIGRI), novaya seriya, 50 (Mikrofauna Neftyanykh Mestorozhdeniy SSSR, Sbornik 3):545. (In Russian) Google Scholar
Grozdilova, L. P. and Lebedeva, N. S. 1954. Foraminifery nizhnego karbona i bashkirskogo yarusa srednego karbona Kolvo-Visherskogo Kraya. Trudy Vsesoyuznogo Neftyanogo Nauchno-Issledovatel'skogo Geologo-Razvedochnogo Instituta (VNIGRI), novaya seriya, 81 (Mikrofauna Neftyanykh Mestorozhdeniy SSSR, Sbornik 7):4235. (In Russian) Google Scholar
Grozdilova, L. P. and Lebedeva, N. S. 1960. Foraminifer kamennougol'nykh otlozheniy zapadnogo sklona Urala i Timana (Atlas naubolee kharakternykh vidov). Trudy Vsesoyuznogo Neftyanogo Nauchno-Issledovatel'skogo Geologo-Razvedochnogo Instituta (VNIGRI), 150:1264. (In Russian) Google Scholar
Grozdilova, L. P., Lebedeva, N. S., Lipina, O. A., Malakhova, N. P., Mikhaylova, Z. P., Chermnykh, V. A., Postoyalko, M. V., Simonova, Z. G., Sinitsyna, Z. A., and Shcherbakova, M. V. 1975. Foraminifera, p. 2764. In Stepanov, D. L., Krylova, A. K., Grozdilova, L. P., Pozner, V. M., and Sultaev, A. A. (eds.), Paleontologicheskiy Atlas Kamennougol'nykh Otlozheniy Urala. Ministerstvo Geologii SSSR, Trudy Vsesoyuznogo Neftyanogo Nauchno-Issledovatel'skogo Geologo-Razvedochnogo Instituta (VNIGRI), 383. (In Russian) Google Scholar
Grubbs, R. K. 1984. Conodont platform elements from the Wapanucka and Atoka Formations (Morrowan-Atokan) of the Mill Creek Syncline, Central Arbuckle Mountains, Oklahoma, p. 6579. In Southerland, P. K. and Manger, W. L. (eds.), The Atokan Series and its boundaries – A symposium. Oklahoma Geological Survey Bulletin 136.Google Scholar
Gunnell, F. H. 1931. Conodonts from the Fort Scott Limestone of the Missouri. Journal of Paleontology, 5:244252.Google Scholar
Gunnell, F. H. 1933. Conodonts and fish remains from the Cherokee, Kansas City, and Wabaunsee groups of Missouri and Kansas. Journal of Paleontology, 7:261297.Google Scholar
Gurevich, K. Y. 1959. Materialy k izuchenyu kamennougolnykh ostrakod lvovskoi muldy, p. 147173. In Muromtseva, A. S. (ed.), Voprosy stratigrafii, litologii i paleontologii neftegazonosnykh raionov Ukraini. Trudy Ukrainskii nauchno-issledovatelskii geologorazvedochnyi institut (UkrNIGRI), Moskva. (In Russian) Google Scholar
Haack, R. C. and Kaesler, R. L. 1980. Upper Carboniferous ostracode assemblages from a mixed carbonate-terrigenous-mud environment. Lethaia, 13:147156.Google Scholar
Han, J. X. 1980. Protozoa, p. 1895. In Shenyang Institute of Geology and Mineral Resources (ed.), Paleontological Atlas of Northeast China, 1, Paleozoic Volume. Geological Publishing House, Beijing. (In Chinese) Google Scholar
Han, J. X. and Zhao, Z. X. 1984. Fusulinida, p. 5595. In Zhao, Z. X., Han, J. X., and Wang, Z. J. (eds.), The Carboniferous Strata and Its Fauna from Southwestern Margin of Tarim Basin in Xinjiang. Geological Publishing House, Beijing. (In Chinese with English abstract and description of new genus) Google Scholar
Harlton, B. H. 1927. Some Pennsylvanian ostracoda of the Glenn and Hoxbar Formations of southern Oklahoma and of the upper part of the Cisco Formation of northern Texas. Journal of Paleontology, 1:203212.Google Scholar
Harlton, B. H. 1929a. Some Upper Mississippian (Fayetteville) and lower Pennsylvanian (Wapanucka-Morrow) ostracoda of Oklahoma and Arkansas. American Journal of Science, series 5, 18:254270.Google Scholar
Harlton, B. H. 1929b. Pennsylvanian ostracoda from Menard County, Texas. Bulletin of the University of Texas, Contributions to Geology, 2901:139161.Google Scholar
Harlton, B. H. 1933. Micropaleontology of the Pennsylvanian Johns Valley shale of the Ouachita Mountains, Oklahoma, and its relationship to the Mississippian Caney shale. Journal of Paleontology, 7:329.Google Scholar
Harris, A. G., Brenckle, P. L., Baesemann, J. F., Krumhardt, A. P., and Gruzlovic, P. D. 1997. Comparison of conodont and calcareous microfossil biostratigraphy and lithostratigraphy of the Lisburne Group (Carboniferous), Sadlerochit Mountains, Northeast Brooks Range, Alaska, p. 195219. In Dumoulin, J. A. and Gray, J. E. (eds.), Geologic Studies in Alaska by the U.S. Geological Survey, 1995. U.S. Geological Survey Professional Paper, 1574.Google Scholar
Harris, R. W. and Hollingsworth, R. V. 1933. New Pennsylvanian conodonts from Oklahoma. American Journal of Science, 25:193204.Google Scholar
He, X. L., Zhu, M. L., Fan, B. H., Zhuang, S. Q., Ding, H., and Xue, Q. Y. 1995. The Late Paleozoic Stratigraphic Classification, Correlation and Biota from Eastern Hill of Taiyuan City, Shanxi Province. Jilin University Press, Changchun, 149 p. (In Chinese with English summary) Google Scholar
He, X. L., Zhang, Y. J., Zhu, M. L., Zhang, G. Y., Zhuang, S. Q., Zeng, Y., and Song, P. 1990. Research on the Late Paleozoic Coal-Bearing Stratigraphy and Biota in Jungar, Nei Mongol (Inner Mongolia). China University of Mining and Technology Press, Xuzhou, 407 p. (In Chinese with English summary and description of new genus and species) Google Scholar
Heckel, P. H. 1994. Evaluation of evidence for glacio-eustatic control over marine Pennsylvanian cyclothems in North America and consideration of possible tectonic effects, p. 6587. In Dennison, J. M. and Ettensohn, F. R. (eds.), Tectonic and eustatic controls on sedimentary cycles. SEPM Concepts in Sedimentology and Paleontology, 4.Google Scholar
Henningsmoen, G. 1953. Classification of Paleozoic straight-hinged ostracods. Norsk Geologisk Tidsskrift, 31:185288.Google Scholar
Hoare, R. D. 1998. The ostracode genera Moorites Coryell and Billings, 1932, and Discoidella Croneis and Gale, 1938, in the Pennsylvanian of the Appalachian Basin. Journal of Paleontology, 72:10471054.Google Scholar
Hoare, R. D. and Sturgeon, M. T. 1994. Small fusulinids from the Pennsylvanian of Ohio. Journal of Paleontology Memoir 38:121.Google Scholar
Huzimoto, H. 1938. Some foraminiferous fossils from the Koten Series of Zido Coal-field, Tyosen. The Journal of the Geological Society of Japan, 45:271276.Google Scholar
Igo, H. 1957. Fusulinids of Fukuji, southeastern part of the Hida Massif, Central Japan. Science Reports of the Tokyo Kyoiku Daigaku, Section C, Geology, Mineralogy and Geography, 5(47):153246.Google Scholar
Igo, H. 1972. Fusulinacean fossils from Thailand, Pt. VI, Fusulinacean fossils from North Thailand, p. 63116. In Kobayashi, T. and Toriyama, R. (eds.), Geology and Palaeontology of Southeast Asia, 10.Google Scholar
Igo, H. and Okimura, Y. 1992. Carboniferous-Permian foraminifers of west Spitsbergen, p. 97117. In Japanese-Norwegian Research Group (ed.), Investigations on the Upper Carboniferous-Upper Permian Succession of West Spitsbergen 1989–1991. Hokkaido University, Sapporo.Google Scholar
Institute of Geological Exploration CCMRI, Ministry of Coal Industry, and Shanxi Provincial Coal Exploration Company Ministry. 1987. Sedimentary Environments of Taiyuan Xishan Coal Basin. China Coal Industry Publishing House, Beijing, 633 + 37 p. (In Chinese with English abstract) Google Scholar
Institute of Geology and Palaeontology, Academia Sinica. 1962. Handbook of Index Fossils from the Yangtze District. Science Publishing House, Beijing, 188 p. (In Chinese) Google Scholar
International Commission on Zoological Nomenclature (ICZN). 1999. International Code of Zoological Nomenclature, fourth edition. The International Trust for Zoological Nomenclature, London, 306 p.Google Scholar
Isakova, T. N. 2001. Fuzulinidy, p. 1032. In Makhlina, M. Kh., Alekseev, A. S., Goreva, N. V., Goryunova, R. V., Isakova, T. N., Kossovaya, O. L., Lazarev, S. S., Lebedev, O. A., and Shkolin, A. A. (eds.), Sredniy Karbon Moskovskoy Sineklizy (Yuzhnaya Chast') Tom 2, Paleontologicheskaya Kharakteristika. Nauchnyy Mir, Moskva. (In Russian) Google Scholar
Isakova, T. N. 2002. Moscovian foraminiferal biostratigraphy in the type region (Russia), p. 448460. In Hills, L. V., Henderson, C. M., and Bamber, E. W. (eds.), Carboniferous and Permian of the World: XIV ICCP Proceedings. Canadian Society of Petroleum Geologists Memoir, 19.Google Scholar
Ishii, K. 1962. Fusulinids from the middle Upper Carboniferous Itadorigawa Group in western Shikoku, Japan, Pt. II, Genus Fusulinella and other fusulinids. Journal of Geosciences, Osaka City University, 6(1):158.Google Scholar
Ivanov, V. K. 1983. Ostrakody, p. 6971. In Stepanov, D. L., Opornij razrez pograniznikh sloev karbona i permi yuga Vostozno-Evropejskoj Platform (Gzhelskij i Asselkij Yarusi, skvashina no. 4199 Skosyrskaya). Nauka Leningradskoe Otdel, Leningrad.Google Scholar
Ivanova, R. M. 1973. Bashkirskiy yarus vostochnogo sklona yuzhnogo Urala. Akademiya Nauk SSSR, Ural'skiy Nauchnyy Tsentr, Trudy Instituta Geologii i Geokhimii, 82 (Sbornik po Voprosam Stratigrafii No. 15):87102. (In Russian) Google Scholar
Ivanova, R. M. 1988. Pozdneserpukhovskie foraminifery vostochnogo sklona srednego i yuzhnogo Urala. Akademiya Nauk SSSR, Ezhegodnik Vsesoyuznogo Paleontologicheskogo Obshchestva, 31:59. (In Russian) Google Scholar
Izart, A., Briand, C., Vaslet, D., Vachard, D., Coquel, R., and Maslo, A. 1996. Stratigraphy and sequence stratigraphy of the Moscovian in the Donets Basin. Tectonophysics, 268:189209.Google Scholar
Johnson, J. H. 1956. Archaeolithophyllum, a new genus of Paleozoic coralline algae. Journal of Paleontology, 30:5355.Google Scholar
Johnson, J. H. 1960. Paleozoic Solenoporaceae and related red algae. Quarterly Colorado School of Mines, 55:177.Google Scholar
Jones, D. J. 1941. The Conodont Fauna of the Seminole Formation of Oklahoma. Private Edition, University of Chicago Libraries, Chicago, Illinois, 55 p.Google Scholar
Jones, P. J. 1989. Lower Carboniferous ostracoda (Beyrichicopida & Kirkbyocopa) from the Bonaparte Basin, northwestern Australia. Australian Government Publishing Service, Bureau of Mineral Resources, Geology and Geophysics, Bulletin 228:197.Google Scholar
Jones, T. R. 1859. In Kirkby, J. W., On Permian Entomostraca from the shell-limestone of Durham, with notes on the species by T.R. Jones, Tyneside Naturalists' Field Club Transactions, 4:122171.Google Scholar
Jones, T. R. and Kirkby, J. W. 1886. Notes on the Palaeozoic bivalved entomostraca. No. 22. on some undescribed species of British Carboniferous ostracoda. Annals and Magazine of Natural History, series 5, 18:249269.Google Scholar
Jones, T. R. and Kirkby, J. W. 1895. Notes on the Palaeozoic bivalved entomostraca. No. 32. Some Carboniferous ostracoda from Yorkshire. Annals and Magazine of Natural History, series 6, 16:452460.Google Scholar
Jones, T. R. and Kirkby, J. W. 1896. On Carboniferous ostracoda from Ireland. Scientific Transactions of the Royal Dublin Society, series 2, 6:173204.Google Scholar
Jones, T. R., Kirkby, J. W., and Brady, G. S. 1884. A monograph of the British fossil bivalved Entomostraca from the Carboniferous Formations, Pt. 1, no. 2: The Cypridinadae and their allies. Annual Volumes (Monographs) of the Palaeontographical Society, 38:5792.Google Scholar
Kaesler, R. L. 1982. Ostracoda as environmental indicators in Late Pennsylvanian subsurface shales. Third North American Paleontological Convention Proceedings, 1:275280.Google Scholar
Kaesler, R. L. and Denver, L. E. 1988. Distribution and diversity of nearshore Ostracoda: Environmental control in the Early Permian, p. 671683. In Hanai, T., Ikeya, N., and Ishizaki, K. (eds.), Evolutionary Biology of Ostracoda. Elsevier, Amsterdam.Google Scholar
Kahler, F. and Kahler, G. 1966–67. Fossilium Catalogus, I: Animalia. Pars 111–114, Fusulinida (Foraminiferida), Teil 1–4. Uitgeverij Dr. W. Junk, Gravenhage, 974 p.Google Scholar
Kahler, F. and Kahler, G. 1979. Fusuliniden (Foraminiferen) aus dem Karbon und Perm von Westanatolien und dem Iran. Mitteilungen der österreichischen geologischen Gesellschaft, 70:187269.Google Scholar
Kanmera, K. 1954. Fusulinids from the Yayamadake Limestone of the Hikawa Valley, Kumamoto Prefecture, Kyushu, Japan, Pt. I, Fusulinids of the upper Middle Carboniferous. Japanese Journal of Geology and Geography, 25(1–2):117144.Google Scholar
Kegel, W. 1932. Zur Kenntnis paläozoischer Ostrakoden: 2. Bairdiidae aus dem Mitteldevon des Rheinischen Schiefergebirges. Jahrbuch der Preussischen Geologischen Landesanstalt zu Berlin, 52:245250.Google Scholar
Kellett, B. 1933. Ostracodes of the Upper Pennsylvanian and the Lower Permian strata of Kansas: 1. The Aparchitidae, Beyrichiidae, Glyptopleuridae, Kloedenellidae, Kirkbyidae, and Youngiellidae. Journal of Paleontology, 7:59108.Google Scholar
Kellett, B. 1935. Ostracodes of the upper Pennsylvanian and the Lower Permian strata of Kansas: III. Bairdiidae (concluded), Cytherellidae, Cypridinidae, Entomoconchidae, Cytheridae and Cypridae. Journal of Paleontology, 9:132166.Google Scholar
Khain, V. E. 1985. Geology of the U.S.S.R. Gebrüder Borntraeger, Berlin-Stuttgart, 272 p.Google Scholar
Khain, V. E. 1994. Geology of Northern Eurasia (Ex-USSR). Gebrüder Borntraeger, Berlin-Stuttgart, 404 p.Google Scholar
Kietzke, K. K. and Kaesler, R. L. 1992. Late Pennsylvanian Ostracoda from the Kinney Brick Quarry, Bernalillo County, New Mexico, with notes on other microfossils. New Mexico Bureau of Mines & Mineral Resources Bulletin, 138:127133.Google Scholar
Kireeva, G. D. 1949. Nekotorye novye vidy fuzulinid iz kamennougol'nykh izvestnyakov tsentral'nogo rayona Donbassa. Ministerstvo Ugol'noy Promyshlennosti SSSR, Gravnoe Upravlenie po Razvedkam Uglya, Trudy Geologo-Issledovatel'skogo Byuro, 6:2554. (In Russian) Google Scholar
Kireeva, G. D. 1951. Stratigraficheskoe polozhenie moskovskogo yarusa v razreze Donetskogo basseyna (na osnove raspredeleniya fuzulinidy). Byulleten' Moskovskogo Obshchestva Ispytateley Prirody, Otdel Geologicheskiy, 26(3):3551. (In Russian) Google Scholar
Knight, J. B. 1928a. Some Pennsylvanian ostracodes from the Henrietta Formation of eastern Missouri, Pt. I. Journal of Paleontology, 2:229267.Google Scholar
Knight, J. B. 1928b. Some Pennsylvanian ostracodes from the Henrietta Formation of eastern Missouri, Pt. II. Journal of Paleontology, 2:318337.Google Scholar
Kochetkova, N. M. 1983. Ostrakodi srednego Karbona yuzhnogo Urala. Akademiya Nauk SSSR, Bashkirskii Filial, Institut Geologii, Ufa, 120 p. (In Russian) Google Scholar
Kochetkova, N. M. and Yagudina, Z. G. 1979. Ostrakodi, p. 97105, 137–138, 183–185. In Einor, O. L., Atlas fauni i flori srednego-pozdnego Karbona Bashkirii. Ministerstvo neftyanoi promishlennosti SSSR, Nedra, Moskva. (In Russian) Google Scholar
Kochetova, N. N. 1984. Ostrakody Moskovskogo yarusa vostochnogo sklona yuzhnogo Urala. Paleontologicheskij Zhurnal, 1984(2):7581. (In Russian) Google Scholar
Kochetova, N. N. 1985. Pervie nakhodki ostrakod v Moskovskom yaruse Podmoskovya, p. 5663. In Abramova, A. N., Maslov, V. A., Kochetkova, N. M., and Tschibrikova, E. V. (eds.), Biostratigrafiya i litologiya paleozoya yuzhnogo i srednego Urala. Akademiya Nauk SSSR, Bashkirskii Filial, Institut Geologii, Ufa. (In Russian) Google Scholar
Korde, K. B. 1951. New calcareous algal species and genera from the Carboniferous of northern Urals. Moskovskogo Obshchestva Ispitatelej Prirody, 1:175182. (In Russian) Google Scholar
Kornicker, L. S. 1961. Ecology and taxonomy of recent Bairdiinae (Ostracoda). Micropaleontology, 7:5570.Google Scholar
Kossenko, Z. A. 1975. Novye vidy konodontov iz otlozheniy moskovskogo yarusa yugo-zapadnoi chasti Donetskogo baseina. Geologicheskiy Zhurnal, 35(5):126133. (In Russian) Google Scholar
Kozitskaya, R. I. and Kossenko, Z. A. 1975. Znachenie konodontov dlya detalnogo rashleneniya moskovskogo, kasimovskogo i gzhelskogo yarusov Donetskogo baseina. Moskovskogo Obshchestva Ispitatelej Prirody, 50:157. (In Russian) Google Scholar
Kozitskaya, R. I., Kossenko, Z. A., Lipnjagov, O. M., and Nemirovskaya, T. I. 1978. Konodonty Karbona Donetskogo Baseina. Izdatel'stvo “Naukova Dumka,” Kiev, 138 p. (In Russian) Google Scholar
Kozur, H. 1975. Beiträge zur Conodontenfauna des Perm. Geologisch Paläontologische Mitteilungen Innsbruck, 5/4, 44 p.Google Scholar
Kuang, G. D., Li, J. X., Zhong, K., Su, Y. B., and Tao, Y. B. 1999. Stratigraphy of Guangxi, China, (Pt. 2), Carboniferous of Guangxi. China University of Geosciences Press, Wuhan, 258 p. (In Chinese with English summary) Google Scholar
Kulagina, E. I., Rumyantseva, Z. S., Pazukhin, V. N., and Kochetova, N. N. 1992. Granitsa Nizhnego-Srednego Karbona na Yuzhnom Urale i Srednem Tyan'-Shane. Rossiyskaya Akademiya Nauk, Ural'skoe Otdelenie, Bashkirskiy Nauchnyy Tsentr, Institut Geologii, Nauka, Moskva, 111 p. (In Russian) Google Scholar
Kulagina, E. I., Pazukhin, V. N., Kochetkova, N. M., Sinitsyna, Z. A., and Kochetova, N. N. 2001. Stratotipicheskie i Opornye Razrezy Bashkirskogo Yarusa Karbona Yuzhnogo Urala. Rossiyskaya Akademiya Nauk, Ufimskiy Nauchnyy Tsentr, Institut Geologii, Izdatel'stvo Gilem, Ufa, 138 p. (In Russian) Google Scholar
Lambert, L. L., Heckel, P. H., and Barrick, J. B. 2003. Swadelina new genus (Pennsylvanian conodonts), a taxon with potential chronostratigraphic significance. Micropaleontology, 49(2):151158.Google Scholar
Latham, M. H. 1933. Scottish Carboniferous ostracoda. Transactions of the Royal Society of Edinburgh, 57:351395.Google Scholar
Latreille, P. A. 1802. Histoire naturelle, génerale et particulière des crustacés et des insectes. 3. Ostrachoda: 17, 4. Cypris: 232–248, Cythere: 252254. Dufart, Paris.Google Scholar
Lebedeva, N. S. 1966. Foraminifery srednego karbona severnogo Timana. Trudy Vsesoyuznogo Neftyanogo Nauchno-Issledovatel'skogo Geologorazvedochnogo Instituta (VNIGRI), 250 (Mikrofauna Neftyanykh Mestorozhdeniy SSSR, Sbornik 14):176253. (In Russian) Google Scholar
Lee, C. Z. 1985. Moscovian fusulinids from the upper Yobong and Pangyo Formations in the Yeongweol Coalfield, Korea. Journal of the Paleontological Society of Korea, 1:7194.Google Scholar
Lee, C. Z. and Kim, G. R. 1995. Fusulinids from the Geumcheon Formation in Danyang Coalfield, Korea. Journal of the Korean Earth Science Society, 16(2):144151.Google Scholar
Lee, J. S. 1927. Fusulinidae of North China. Palaeontologia Sinica, series B, 4(1):1171.Google Scholar
Lee, J. S. 1931. Distribution of the dominant types of the fusulinoid foraminifera in the Chinese Seas. Bulletin of the Geological Society of China, 10:273290.Google Scholar
Lee, J. S. 1934. Taxonomic criteria of Fusulinidae with notes on seven new Permian genera. Memoirs of the National Research Institute of Geology, 14:133.Google Scholar
Lee, J. S. 1937. Foraminifera from the Donets Basin and their stratigraphic significance. Bulletin of the Geological Society of China, 16:57107.Google Scholar
Lee, J. S., Chen, S., and Chu, S. 1930. Huanglung Limestone and its fauna. Memoirs of the National Research Institute of Geology, 9:85172.Google Scholar
Leven, E. Ja. 1998. Stratigraphy and fusulinids of the Moscovian Stage (Middle Carboniferous) in the southwestern Darvaz (Pamir). Rivista Italiana di Paleontologia e Stratigrafia, 104:342.Google Scholar
Leven, E. Ja. and Davydov, V. I. 2001. Stratigraphy and fusulinids of the Kasimovian and upper Gzhelian (Upper Carboniferous) in the southwestern Darvaz (Pamir). Rivista Italiana di Paleontologia e Stratigrafia, 107:346.Google Scholar
Leven, E. Ja. and Shcherbovich, S. F. 1978. Fuzulinidy i Stratigrafiya Assel'skigo Yarusa Darvaza. Akademiya Nauk SSSR, Moskovskoe Obshchestvo Ispytateley Prirody, Nauka, Moskva, 163 p. (In Russian) Google Scholar
Li, J. Z. 1989. Guangxi Fusulinids. Guangxi Normal College Press, Guangxi, 213 p. (In Chinese) Google Scholar
Li, L. Z. 1996. Chapter 4, Description of fossils. 1, Fusulinida, p. 3845. In Li, Z. Y., Li, Y. W., Xiao, C. T., Lin, B. G., and Jiang, Y. W. (eds.), Carboniferous and Permian Biostratigraphy of Tarim Basin. Geological Publishing House, Beijing. (In Chinese with English summary) Google Scholar
Liem, N. V. 1966. New fusulinids from Quy Dat, central Vietnam. Acta Scientiarum Vietnamicarum, Sectio Scientiarum Geologicarum et Geographicarum, 2:151.Google Scholar
Liem, N. V. 1967. Fusulinids of central Viet Nam: Carboniferous fusulinids from Quy Dat. Acta Scientiarum Vietnamicarum, Sectio Biologicarum, Geographicarum et Geologicarum, 1:4548.Google Scholar
Lin, J. X. 1984. Chapter 5, Description of fossils. Protozoa, p. 110177. In Yichan Institute of Geology and Mineral Resources (ed.), Biostratigraphy of the Yangtze Gorge Area (3), Late Paleozoic Era. Geological Publishing House, Beijing. (In Chinese with English abstract and description of new genus and species) Google Scholar
Lin, J. X., Meng, F. Y., and Wu, Q. H. 1991. Carboniferous and Permian fusulinids from Hebei, p. 70132. In Hebei Coal Geology and Exploration Corporation (ed.), Late Paleozoic Foraminiferal Biostratigraphy of Hebei, China. Science Press, Beijing. (In Chinese with English abstract and description of new species) Google Scholar
Lin, J. X., Li, J. X., Chen, G. X., Zhou, Z. R., and Zhang, B. F. 1977. Protozoa, p. 496. In Bubei Institute of Geological Science, Geological Bureau of Henan Province, Geological Bureau of Hubei Province, Geological Bureau of Hunan Province, Geological Bureau of Guangdong Province, and Geological Bureau of Guangxi Zhuangzu Autonomous Region (eds.), Paleontological Atlas of Central South China, 2 (Late Paleozoic). Geological Publishing House, Beijing. (In Chinese) Google Scholar
Liszak, J. L. and Ross, C. A. 1997. Foraminifera and associated faunas, Lower Carboniferous-Lower Permian Chilliwack Group, Black Mountain, Northwest Washington, p. 8993. In Ross, C. A., Ross, J. R. P., and Brenckle, P. L. (eds.), Late Paleozoic Foraminifera: Their biostratigraphy, evolution and paleoecology; and the Mid-Carboniferous Boundary. Cushman Foundation for Foraminiferal Research, Special Publication 36.Google Scholar
Liu, G. C., Zhou, T. Z., Zhou, G. D., Zhang, Z. H., Bao, J. L., and Chen, X. C. 1987. Stratigraphy of Late Paleozoic in Qimantag Mountains, Qinghai Province. Sichuang Science and Technology Press, Chengdu, 72 p. (In Chinese with English abstract) Google Scholar
Liu, Z. A., Xiao, X. M., and Dong, W. L. 1978. Protozoa, p. 1298. In Working Group of Stratigraphy and Paleontology of Guizhou (ed.), Paleontological Atlas of Southwest China, Guizhou. Volume 2 (Carboniferous to Quaternary). Geological Publishing House, Beijing. (In Chinese) Google Scholar
Liu, Z. C. and Zhang, L. X. 1992. Fusulinids of Ningxia. Acta Palaeontologica Sinica, 31:423444. (In Chinese with English summary) Google Scholar
Loeblich, A. R. Jr., and Tappan, H. 1988. Foraminiferal Genera and Their Classification. Van Nostrand Reinhold, New York, 970 p.Google Scholar
Lys, M. 1985. North Africa, Foraminifera, p. 354364. In Wagner, R. H., Winkler Prins, C. F., and Granados, L. F. (eds.), The Carboniferous of the World II. Australia, Indian Subcontinent, South Africa, South America, & North Africa (IUGS Publication No. 20). Instituto Geológico y Minero de España and Empresa Nacional Adaro de Investigaciones Mineras, s. a., Madrid.Google Scholar
Lys, M. 1988a. Biostratigraphie du Carbonifère et du Permien en Mésogée (Espagne, Afrique du Nord, Régions Egéennes, Proche-Orient): Études micropaléontologiques (Foraminifères), paléobiogéographie. Documents du B. R. G. M., 147:1315.Google Scholar
Lys, M. 1988b. Biostratigraphie des dépôts marins du Carbonifère et du Prmien du Sud-Tunisien – micropaléontologie (foraminifers) et paléobiogéographie. Bulletine des Centres de Recherches Exploration-Production Elf-Aquitaine, 12:601659.Google Scholar
Lys, M. and Raoult, J.-F. 1970. Découverte de Carbonifère à fusulinidés dans le nord du Constantinois (Algérie septentrionale). Compte Rendus des Séances de l'Académie des Sciences, Paris, 270:27522755.Google Scholar
Lys, M., Stampfli, G., and Jenny, J. 1978. Biostratigraphie du Carbonifère et du Permien de l'Elbourz oriental (Iran du NE). Note du Laboratoire de Paléontologie de l'Université de Genève, 2(10):6378.Google Scholar
Maddocks, R. F. 1990. Living and fossil Macrocyprididae (Ostracoda). University of Kansas Paleontological Contributions Monograph 2:1404.Google Scholar
Makhlina, M. Kh., Alekseev, A. S., Goreva, N. V., Isakova, T. N., and Drutskoy, S. N. 2001a. Sredniy karbon Moskovskoy sineklizy (yuzhnaya chast'). Volume 1. Stratigraphy. Paleontologicheskiy Institut Rossiiskoy Akademii Nauk, Moscow, 244 p. (In Russian) Google Scholar
Makhlina, M. Kh., Alekseev, A. S., Goreva, N. V., Isakova, T. N., and Drutskoy, S. N. 2001b. Sredniy karbon Moskovskoy sineklizy (yuzhnaya chast'). Volume 2. Paleontological Characteristics. Paleontologicheskiy Institut Rossiiskoy Akademii Nauk, Moscow, 288 p. (In Russian) Google Scholar
Makhlina, M. Kh., Vdovenko, M. V., Alekseev, A. S., Byvsheva, T. V., Donakova, L. M., Zhulitova, V. E., Kononova, L. I., Umnova, N. I., and Shik, E. M. 1993. Nizhniy Karbon Moskovskoy Sineklizy i Voronezhskoy Anteklizy. Rossiyskaya Akademiya Nauk, Moskovskoe Obsshchestvo Ispytateley Prirody, Nauka, Moskva, 221 p. (In Russian) Google Scholar
Malakhova, N. P. 1973. Moskovskiy yarus vostochnogo sklona yuzhnogo Urala. Akademiya Nauk SSSR, Ural'skiy Nauchnyy Tsentr, Trudy Instituta Geologii i Geokhimii, 82 (Sbornik po Voprosam Stratigrafii No. 15):103126. (In Russian) Google Scholar
Malakhova, N. P. 1980. Srednekamennougol'nye Fuzulinidy Yugo-vostochnogo Urala. Akademiya Nauk SSSR, Ural'skiy Nauchnyy Tsentr, Institut Geologii i Geokhimi im. Akad. A. N. Zavaritskogo, Preprint, Sverdlovsk, 23 p. (In Russian) Google Scholar
Mamet, B. L., Mikhailoff, N., and Mortelmans, G. 1970. La stratigraphie du Tournaisien et du Viséen inférieur de Landelies. Comparaison avec les coupes du Tournais et du bord nord du synclinal de Namur. Mémoires de la Société beige de Géologie, de Paléontologie et d'Hydrologie, série 8, 9:181.Google Scholar
Mamet, B. L., Pinard, S., and Armstrong, A. K. 1993. Micropaleontological zonation (foraminifers, algae) and stratigraphy, Carboniferous Peratrovich Formation, southeastern Alaska. U.S. Geological Survey Bulletin, 2031:132.Google Scholar
Manukalova, M. F. 1948. Foraminifery kamennougol'nykh otlozheniy Baklanovskoy skvazhiny No. 2, Semichnogo rayona Bol'shogo Donbassa. Trudy Geologo-Issledovatel'skie Byuro Glavuglerazvedki, 3:4763. (In Russian) Google Scholar
Manukalova, M. F. 1950a. Opisanie nekotorykh novykh vidov fuzulinid iz srednego karbona Donetskogo Basseyna, p. 175192. In Materialy po Stratigrafii i Paleontologii Donetskogo Basseyna. Geologo-Issledovatel'skie Raboty, Ministerstvo Ugol'noy Promyshlennosti SSSR, Glavnoe Upravlenie po Razvedkam Uglya, Ugletekhizdat, Moskva. (In Russian) Google Scholar
Manukalova, M. F. 1950b. Novye vidy fuzulinid iz izvestnyakov srednego Karbona Donbassa, p. 219237. In Materialy po Stratigrafii i Paleontologii Donetskogo Basseyna. Geologo-Issledovatel'skie Raboty, Ministerstvo Ugol'noy Promyshlennosti SSSR, Glavnoe Upravlenie po Razvedkam Uglya, Ugletekhizdat, Moskva. (In Russian) Google Scholar
Manukalova, M. F. 1956. Stratigraficheskoe podrazdelenie srednego karbona Donetskogo basseyna po foraminiferam. Byulleten' Moskovskogo Obshchestva Ispytateley Prirody, Otdel Geologicheskiy, 31(6):79102. (In Russian) Google Scholar
Manukalova, M. F. 1965. Novoe vidovoe nazvanie – Ozawainella almasniensis Manukalova, nom. nov. Paleontologicheskiy Zhurnal, 1965, No. 1:145.Google Scholar
Manukalova-Grebenyuk, M. F., Il'ina, M. T., and Serezhnikova, T. D. 1969. Atlas foraminifer srednego karbona Dneprovsko-Donetskoy Vpadiny. Ministerstvo Geologii U.S.S.R., Trudy Ukrainskiy Nauchno-Issledovatel'skiy Geologorazvedochnyy Institu (UkrNIGRI), 20:1287. (In Russian) Google Scholar
Marfenkova, M. M. 1991. Morskoy Karbon Kazakhstana (Stratigrafiya, Zinal'noe, Raschlenenie, Foraminifery), Chast' 2. Akademiya Nauk Kazakhskoy SSR, Institut Geologicheskikh Nauk im. K. I. Satpaeva, Gylym, Alma-Ata, 151 p. (In Russian) Google Scholar
Marple, M. F. 1952. Ostracodes from the Pottsville Series in Ohio. Journal of Paleontology, 26:924940.Google Scholar
Marshall, F. C. 1969. Lower and Middle Pennsylvanian fusulinids from the Bird Spring Formation near Mountain Springs Pass, Clark County, Nevada. Brigham Young University Geology Studies, 16(1):97154.Google Scholar
Maslo, A. and Vachard, D. 1997. Inventaire critique des Eostaffellinae (Foraminifères) du Carbonifère. Revue de Micropaléontologie, 40:3969.Google Scholar
Maslov, V. P. 1956. Fossil calcareous algae of the USSR. Akademiya Nauk SSSR, Trudy Instituta Geologicheskikh Nauk, Vypusk, 297 p. (In Russian) Google Scholar
Massa, D. and Vachard, D. 1979. Le Carbonifère de Libye occidentale: biostratigraphie et micropaléontologie — position dans le domaine Téthysien d'Afrique du Nord. Revue de l'Institut Français du Pétrole, 34:365.Google Scholar
McCoy, F. 1844. A Synopsis of the Characters of the Carboniferous Limestone Fossils of Ireland. Dublin, 207 p.Google Scholar
Merrill, G. K. 1972. Taxonomy, phylogeny, and biostratigraphy of Neognathodus in Appalachian Pennsylvanian rocks. Journal of Paleontology, 46:817829.Google Scholar
Merrill, G. K. 1973. Pennsylvanian nonplatform conodont genera, I: Spathognathodus . Journal of Paleontology, 47:289314.Google Scholar
Metcalfe, I. 1983. Southeast Asia, p. 213243. In Wagner, R. H., Winkler Prins, C. F., and Granados, L. F. (eds.), The Carboniferous of the World I. China, Korea, Japan & S. E. Asia (IUGS Publication No. 16). Instituto Geológico y Minero de España and Empresa Nacional Adaro de Investigaciones Mineras, s. a., Madrid.Google Scholar
Mikhaylov, A. V. 1939. K kharakteristike rodov nizhnekamennougol'nykh foraminifer territorii SSSR. Sbornik Leningradskogo Geologicheskogo Upravleniya, Glavnoe Geologicheskoe Upravlenie, 3:4762. (In Russian) Google Scholar
Mikhno, N. M. and Balakin, G. V. 1975. Foraminifery i Mushanki Nizhnego Karbona Chatkal'skikh Gor. Ministerstvo Geologii Uzbekskoy SSR, Sredneaziatskiy Institut Geologii i Mineral'nogo Syr'ya, Izdatel'stvo FAN, Uzbekskoy SSSR, Tashkent, 127 p. (In Russian) Google Scholar
Miklukho-Maklay, A. D. 1949. Verkhnepaleozoyskie Fuzulinidy Sredney Azii, Darvaz, Fergana, Pamir. Leningradskiy Gosudarstvennyy Universitet im. A. A. Zhdanova, Leningrad, 127 p. (In Russian) Google Scholar
Miklukho-Maklay, A. D. 1959. O stratigraficheskom znachenii, sistematike i filogenii shtaffelloobraznykh foraminifer. Doklady Akademii Nauk SSSR, 125:628631. (In Russian) Google Scholar
Miklukho-Maklay, A. D., Rauser-Chernousova, D. M., and Rozovskaya, S. E. 1959. Otryad Fusulinida, p. 201215. In Rauser-Chernousova, D. M. and Fursenko, A. V. (eds.), Osnovy Paleontologii, Spravochnik dlya Paleontologiv i Geologov SSSR, Obshchaya Chast' Prosteyshie. Izdatelstvo Alademii Nauk SSSR, Moskva. (In Russian) Google Scholar
Mizuno, Y. and Ueno, K. 1997. Conodont and foraminiferal faunal changes across the Mid-Carboniferous boundary in the Hina Limestone Group, southwest Japan, p. 189205. In Podemski, M., Dybova-Jachowicz, S., Jaworowski, K., Jureczka, J., and Wagner, R. (eds.), Proceedings of the XIII International Congress on the Carboniferous and Permian, Pt. 3, Prace Panstwowego Instytutu Geologicznego, 157(3).Google Scholar
Möller, V. von. 1877. Über Fusulinen und ähnliche Foraminiferen-Formen des russischen Kohlenkalkes. Neues Jahrbuch für Mineralogie, Geologie und Paläontologie, 1877:139146.Google Scholar
Möller, V. von. 1878. Die spiral-gewundenen Foraminiferen des Russischen Kohlenkalks. Mémoires de l'Académie Impériale des Sciences de St.-Pétersbourg, 7ème série, 25(9):1147.Google Scholar
Moore, W. L. 1964. Notes on the morphology and taxonomic position of the fusulinid Millerella marblensis Thompson. Journal of Paleontology, 38:294305.Google Scholar
Müller, G. W. 1894. Die Ostracoden des Golfes von Neapel und der angrenzenden Meeresabschnitte. Fauna und Flora des Golfes von Neapel und der angrenzenden Meeresabschnitte, Zoologische Station zu Neapel, 21, 404 p.Google Scholar
Müller, G. W. 1912. Crustacea: Ostracoda. Königlich Preussische Akademie der Wissenschaften, Lieferung 31, Berlin, 434 p.Google Scholar
Münster, G. 1830. Über einige fossile Arten Cypris (Müller, Lamk.) und Cythere (Müller, Latreille, Desmarest). Jahrbuch für Mineralogie, Geognosie, Geologie und Petrefaktenkunde, 1:6067.Google Scholar
Murray, F. N. and Chronic, J. 1965. Pennsylvanian conodonts and other fossils from insoluble residues of the Minturn Formation (Desmoinesian), Colorado. Journal of Paleontology, 39:594610.Google Scholar
Nalivkin, D.V. 1973. Geology of the U.S.S.R. Oliver & Boyd, Edinburgh, 855 p.Google Scholar
Nemyrovska, T. I. 1999. Bashkirian conodonts of the Donets Basin, Ukraine. Scripta Geologica, 119, 115 p.Google Scholar
Nemyrovska, T. I., Perret-Mirouse, M.-F., and Alekseev, A. S. 1999. On Moscovian (Late Carboniferous) conodonts of the Donets Basin, Ukraine. Neues Jahrbuch für Geologie und Paläontologie, Abhandlungen, 214(1–2):169194.Google Scholar
Niikawa, I. 1978. Carboniferous and Permian fusulinids from Fukuji, central Japan. Journal of the Faculty of Science, Hokkaido University, Series IV, Geology and Mineralogy, 18:533610.Google Scholar
Nilsson, I. 1994. Upper Palaeozoic fusulinid assemblages, Wandel Sea Basin, North Greenland. Gr⊘nlands Geologiiske Undersogelse, Rapport, 161:4571.Google Scholar
Okay, A. I. and Leven, E. Ja. 1996. Stratigraphy and paleontology of the Upper Paleozoic sequences in the Pulur (Bayburt) region, eastern Pontides. Turkish Journal of Earth Sciences, 5:145155.Google Scholar
Ozawa, T. 1967. Pseudofusulinella, a genus of Fusulinacea. Transactions and Proceedings of the Palaeontological Society of Japan, new series, 68:149173.Google Scholar
Ozawa, T. 1975. Stratigraphy of the Paleozoic and Mesozoic strata in the Tamagawa area, southeastern part of the Kwanto Mountains. Science Reports, Department of Geology, Kyushu University, 12:5776. (In Japanese with English abstract)Google Scholar
Ozawa, Y. 1925a. On the classification of Fusulinidae. Journal of the College of Science, Imperial University of Tokyo, 45(4):126.Google Scholar
Ozawa, Y. 1925b. Paleontological and stratigraphical studies on the Permo-Carboniferous limestone of Nagato, Pt. II, Paleontology. Journal of the College of Science, Imperial University of Tokyo, 45(6):190.Google Scholar
Pander, C. H. 1856. Monographic der fossilen Fische des silurischen Systems der russisch-baltischen Gouvernements. Akademie der Wissenschaften, St. Petersburg, 91 p.Google Scholar
Peterson, R. M. and Kaesler, R. L. 1980. Distribution and diversity of ostracode assemblages from the Hamelin Shale and the Americus Limestone (Permian, Wolfcampian) in northeastern Texas. The University of Kansas Paleontological Contributions Paper 100, 26 p.Google Scholar
Phillips, J. 1846. On the remains of microscopic animals in the rocks of Yorkshire. Proceedings of the Geological and Polytechnic Society of the West Riding of Yorkshire, Leeds, 2:274285.Google Scholar
Pogrebnyak, V. A. 1975. Kharakternye foraminifer gazonosnykh otlozheniy srednego i nizov verkhnego karbona severnykh okrain Donbassa i ikh stratigraficheskoe znachenie, p. 4069. In Lapkin, I. Yu., Glushenko, N. V., Ivanov, V. K., Il'yukhina, A. V., Migacheva, E. E., Movshovich, E. V., Sterlin, B. P., Pogrebnyak, V. A., Podoba, B. G., Feshchenko, N. I., Shevyakova, E. N., and Shumilina, T. I. (eds.), Stratigrafiya Verkhnego Paleozoya i Nizhnego Mezozoya Dneprovsko-Donetskoy Vpadiny. Ministerstvo Gazovoy Promyshlennosti SSSR, Ukrainskiy Nauchno-Issledovatel'skiy Institut Prirodnykh Gazov, Nedra, Moskva. (In Russian) Google Scholar
Popova, Z. G. and Reitlinger, E. A. 1973. Foraminifera, p. 4876. In Einor, O. L. (ed.), Stratigrafiya i Fauna Kamennougol'nykh Otlozheniy Reki Shartym (Yuzhnyy Ural). Ural'skoe Geologicheskoe Upravlenie, Kievskiy Ordena Lenina Gosudarstvennyy Universitet im. T. G. Shevchenko, Izdatel'skoe Ob'edinenie Bishcha Shkola and Izdatel'stvo Pri L'vovskom Gosudarstvennom Universitete, L'vov. (In Russian) Google Scholar
Posner, V. M. 1951. Stratigrafiya i mikrofauna nizhnego Karbona zapadnogo krila podmoskovnoi kotlovini. Trudi vsesoyuznogo neftyanogo nauchnoissledovatelskogo geologo-razvedochnogo instituta (VNIGRI), novaya seriya, 56:1108. (In Russian) Google Scholar
Postoyalko, M. V. 1990. K voprosu o granites nizhnego i srednego karbona na srednem Urale, p. 7192. In Papulov, G. N. and Chuvashov, B. I. (eds.), Granitsy Biostratigraficheskikh Podrazdeleniy Karbona Urala. Akademiya Nauk SSSR, Ural'skoe Otdelenie, Sverdlovsk. (In Russian) Google Scholar
Potievs'ka, P. D. (Potievskaya, P. D.). 1958. Foraminiferi verkhn'obashkirs'kikh vidkladivzakhidnoi chastini Donets'kogo basseynu. Akademiya Nauk Ukrains'koi SSR, Trudy Instituta Geologicheskikh Nauk, Seriya Stratigrafii i Paleontologii, 31:191. (In Ukrainian)Google Scholar
Potievskaya, P. D. 1964. Nekotorye fuzulinidy i melkie foraminifery bashkirskikh otlozheniy Bol'shogo Donbassa. Akademiya Nauk Ukrainskoy SSR, Trudy Instituta Geologicheskikh Nauk, Seriya Stratigrafii i Paleontologii, 48 (Materialy k Faune Verkhnego Paleozoya Donbassa):3159. (In Russian) Google Scholar
Purnell, M. A. and Baesemann, J. 2000. Ubinatus, a new name for the genus Aethotaxis Baesemann, 1973 (Vertebrata, Conodonta) preoccupied by Aethotaxis Dewitt, 1962 (Vertebrata, Osteichthyes). Journal of Paleontology, 74:544.Google Scholar
Putrja, F. S. 1937a. K stratigrafii srednego karbona yugo-vostochnoy chasti Bol'shogo Donbassa. Azovo-Chernomorskiy Geologicheskiy Trest, Materialy po Geologii i Poleznym Iskopaemym, Sbornik 1:4172. (In Russian) Google Scholar
Putrja, F. S. 1937b. O gruppe Fusulina distenta Roth et Skinner iz srednego karbona Donetskogo basseyna i dr. mest. Azovo-Chernomorskiy Geologicheskiy Trest, Materialy po Geologii i Poleznym Iskopaemym, Sbornik 1:7782. (In Russian) Google Scholar
Putrja, F. S. 1938. Rezul'taty mikropaleontologicheskoy obrabotki kernov iz burovykh skvazhin rayona stanitsy Razdorskoy na Donu. Azovo-Chernomorskiy Geologicheskiy Trest, Materialy po Geologii i Poleznym Iskopaemym, Sbornik 2:1728. (In Russian) Google Scholar
Putrja, F. S. 1939a. K izucheniyu srednekamennougol'nykh foraminifer v Donetskom basseyne. Azovo-Chernomorskoe Geologicheskoe Upravlenie, Materialy po Geologii i Poleznym Iskopaemym, Sbornik 8:175187. (In Russian) Google Scholar
Putrja, F. S. 1939b. Materialy k stratigrafiiverkhnego karbona vostochnoy okrainy Donetskogo basseyna. Azovo-Chernomorskoe Geologicheskoe Upravlenie, Materialy po Geologii i Poleznym Iskopaemym, Sbornik 10:97156. (In Russian) Google Scholar
Putrja, F. S. 1940. Foraminifery i stratigrafiya verkhnekamennougol'nykh otlozheniy vostochnoy chasti Donetskogo basseyna. Azovo-Chernomorskoe Geologicheskoe Upravlenie, Materialy po Geologii i Poleznym Iskopaemym, Sbornik 11:1146. (In Russian) Google Scholar
Putrja, F. S. 1947. Foraminifery kamennougol'nykh otlozheniy po materialam skvazhni Severo-Kamenskogo rayona Bol'shogo Donbassa. Ministerstvo Geologii SSSR, Ukrainskoe Geologicheskoe Upralenie, Materialy po Geologii i Gidrogeologii, Sbornik 4:145167. (In Russian) Google Scholar
Putrja, F. S. 1948a. Protriticites — novyy rod fuzulinid. Trudy L'vovskogo Geologicheskogo Obshchestva pri Gosudarstvennom Universitete im. Ivana Franko, Paleontologicheskaya seriya, 1948, Vypusk 1:9096. (In Russian) Google Scholar
Putrja, F. S. 1948b. Pseudotriticitinae — novoe podsemeystvo fuzulinid. Trudy L'vovskogo Geologicheskogo Obshchestva pri Gosudarstvennom Universitete im. Ivana Franko, Paleontologicheskaya seriya, 1948, Vypusk 1:97101. (In Russian) Google Scholar
Putrja, F. S. 1956. Stratigrafiya i foraminifery srednekamennougol'nykh otlozheniy vostochnogo Donbassa. Trudy Vsesoyuznogo Neftyanogo Nauchno-Issledovatel'skogo Geologo-Razvedochnogo Instituta (VNIGRI), novaya seriya, 98 (Mikrofauna SSSR, Sbornik 8):333519. (In Russian) Google Scholar
Putrja, F. S. and Leontovich, G. E. 1948. K izucheniyu srednekamennougol'nykh fuzulinidi Saratovskogo Povolzh'ya. Byulleten' Moskovskogo Obshchestva Ispytateley Prirody, novaya seriya, 53, Otdel Geologicheskiy, 23:1145. (In Russian) Google Scholar
Ramsbottom, W. H. C. 1952. The fauna of the Cefn Coed Marine Band in the Coal Measures at Aberbaiden, near Tondu, Glamorgan. Bulletin of the Geological Survey of Great Britain, 4:832.Google Scholar
Rauser-Chernousova, D. M. 1938. Verkhnepaleozoyskie foraminifery Samarskoy Luki i Zavolzh'ya. Akademiya Nauk SSSR, Trudy Geologicheskogo Instituta, 7:69167. (In Russian with English summary and description of new species)Google Scholar
Rauser-Chernousova, D. M. 1948a. Materialy k faune foraminifer kamennougol'nykh otlozheniy tsentral'nogo Kazakhstana. Akademiya Nauk SSSR, Trudy Instituta geologicheskikh nauk, 66 (Geologicheskaya Seriya No. 21):127. (In Russian) Google Scholar
Rauser-Chernousova, D. M. 1948b. Nekotorye novye vidy foraminifer iz nizhnekamennougol'nykh otlozheniy Podmoskovnogo Basseyna. Akademiya Nauk SSSR, Trudy Instituta geologicheskikh nauk, 62 (Geologicheskaya Seriya No. 19):227238. (In Russian) Google Scholar
Rauser-Chernousova, D. M. and Fursenko, A. V. 1937. Opredelitel' Foraminifer Neftenosnykh Raionov SSSR. Glavnaya Redaktsiya Gorno-Toplivnoy Literatury, Leningrad/Moskva, 320 p. (In Russian) Google Scholar
Rauser-Chernousova, D. M., Beljaev, G. M., and Reitlinger, E. A. 1936. Verkhne-Paleozoyskie foraminifery Pechorskogo kraya. Akademiya Nauk SSSR, Trudy Polyarnoy Komissii, 28:159232. (In Russian with German summary and description of new genus and species)Google Scholar
Rauser-Chernousova, D. M., Beljaev, G. M., and Reitlinger, E. A. 1940. O foraminiferakh kamennougol'nykh otlozheniy Samarskoy Luki. Trudy Netyanogo Geologo-Razvedochnogo Instituta, novaya seriya, 7:188. (In Russian with English summary and description of species)Google Scholar
Rauser-Chernousova, D. M., Kireeva, G. D., Leontovich, G. E., Gryzlova, N. D., Safonova, T. P., and Chernova, E. I. 1951. Srednekamennougol'nye Fuzulinidy Russkoy Platformy i Sopredel'nykh Oblastey. Akademiya Nauk SSSR, Institut Geologicheskikh Nauk, Ministerstvo Neftyanoy Promyshlennosti SSSR, Izdatelstvo Akademii Nauk, Moskva, 380 p. (In Russian) Google Scholar
Rauser-Chernousova, D. M., Bensh, F. S., Vdovenko, M. V., Gibshman, N. B., Leven, E. Ya., Lipina, O. A., Reitlinger, E. A., Solov'eva, M. N., and Chediya, I. O. 1996. Sprabochnik po Sistematike Foraminifer Paleozoya (Endotiroidy, Fuzulinidy). Rossiyskaya Akademiya Nauk, Geologicheskiy Institut, Nauka, Moskva, p. 204. (In Russian) Google Scholar
Regional Geology Surveying Team, Geological Bureau of Anhui Province. 1982. Fusulinids of Anhui. Anhui Science and Technology Press, Gefei, 145 p. (In Chinese) Google Scholar
Reitlinger, E. A. 1961. Stratigrafiya srednekamennougol'nykh otlozheniy razreza SKB No. 1 Kracnoy polyany v srednem Zavolzh'e, p. 218260. In Dalmatskaya, I. I., Latskova, V. E., Orlova, I. N., Rauser-Chernousova, D. M., Reitlinger, E. A., Safonova, T. P., Semikhatova, E. N., and Chernova, E. I. (eds.), Regional'naya Stratigrafiya SSSR, Tom 5. Stratigrafiya Srednekamennougol'nykh Otlozheniy Tsentral'noy i Vostochnoy Chasti Russkoy Platformy (Na Osnove Izucheniya Foraminifer), 2. Povolzh'e i Prikam'e. Akademiya Nauk SSSR, Geologicheskiy Institut, Izdatel'stvo Akademii Nauk SSSR, Moskva. (In Russian) Google Scholar
Reitlinger, E. A. 1963. Ob odnom paleontologicheskom kriterii ustanovleniya granits nizhnekamennougol'nogo otdela po faune foraminifer. Akademiya Nauk SSSR, Voprosy Mikropaleontologii, 7:2256. (In Russian) Google Scholar
Reitlinger, E. A. 1971. Nekotorye voprosy sistematiki v svete etapnosti razvitiya verkhnepaleozoyskikh foraminifer. faune foraminifer. Akademiya Nauk SSSR, Voprosy Mikropaleontologii, 14:316. (In Russian with English summary) Google Scholar
Remizova, S. T. 1992. Mikropaleontologicheskoe obosnovanie vozrastnoy granitsy srednego i pozdnego Karbona. Rossiyskaya Akademiya Nauk, Ural'skoe Otdelenie, Komi Nauchnyy Tsentr, Seriya Preprintov Nauchnye Doklady, 295:119. (In Russian) Google Scholar
Robinson, E. 1978. A stratigraphical index of British ostracoda. Geological Journal Special Issue, 8:121166.Google Scholar
Ross, C. A. and Dunbar, C. O. 1962. Faunas and correlation of the Late Paleozoic rocks of Northeast Greenland, Pt. II, Fusulinidae. Museum de Minèralogie et de Géologie de l'Université de Copenhague, Communications Paléontologiques, 117:155.Google Scholar
Roth, R. 1929. A revision of the ostracod genus Kirkbya and subgenus Amphissites . Publications of the Wagner Free Institute of Science, 1:156.Google Scholar
Roth, R. and Skinner, J. 1930. The fauna of the McCoy Formation; Pennsylvanian, of Colorado. Journal of Paleontology, 4:332352.Google Scholar
Roundy, P. V. 1926. Mississippian Formations of San Saba County, Texas. United States Geological Survey Professional Paper 146:517.Google Scholar
Roux, A. 1979. Revision du genre Epimastopora “Pia, 1922” (Dasycladaceae). Bulletin Centres Recherche Exploration-Production Elf-Aquitaine, 3:803810.Google Scholar
Rozovskaya, S. E. 1961. K sistematike semeystv Endothyridae i Ozawainellidae. Paleontologicheskiy Zhurnal, 1961, No. 3:1921.Google Scholar
Rozovskaya, S. E. 1964. Bükkhegységi fusulinidák. Geologica Hungarica, Series Paleontologica, 28:343. (In Hungarian and Russian)Google Scholar
Rozovskaya, S. E. 1975. Sostav, ststema i filogeniya otryada Fuzulinida. Akademiya Nauk SSSR, Trudy Paleontologicheskogo Instituta, 149:1267. (In Russian) Google Scholar
Rui, L. 1983. Fusulinacean fauna from the Quanwangtou Limestone (Early Upper Carboniferous) in Jiawang Coal-field, northern Jiangsu. Acta Palaeontologica Sinica, 22:170182. (In Chinese with English abstract) Google Scholar
Rui, L. and Hou, J. H. 1987. Late Carboniferous fusulinaceans from southeastern Shanxi, p. 139280. In 114th Team of Shanxi Coal Geology and Exploration Corporation and Nanjing Institute of Geology and Palaeontology, Academia Sinica (eds.), Late Paleozoic Coal-Bearing Strata and Biota from Southeastern Shanxi, China. Nanjing University Press, Nanjing. (In Chinese with English summary and description of new species) Google Scholar
Rui, L., Nassichuk, W. W., and Thorsteinsson, R. 1996. Middle Carboniferous fusulinaceans from the Canyon Road Formation, northwestern Melville Island (Sverdrup Basin, Canadian Arctic Archipelago). Journal of Foraminiferal Research, 26:2752.Google Scholar
Rui, L., Ross, C. A., and Nassichuk, W. W. 1991. Upper Moscovian (Desmoinesian) fusulinaceans from the type section of the Nansen Formation, Ellesmere Island, Arctic Archipelago. Geological Survey of Canada Bulletin, 418:1121.Google Scholar
Rui, L., Wang, Z. H., and Zhang, L. X. 1987. Luosuan – a new chronostratigraphic unit at the base of the Upper Carboniferous, with reference to the Mid-Carboniferous boundary in China, p. 107131. In Wang, C. Y. (ed.), Carboniferous Boundaries in China. Science Press, Beijing.Google Scholar
Rumyantseva, Z. S. 1974. Stratigrafiya i Foramminifery Srednego Karbona Tsentral'nykh Kyzylkumov. Ministerstvo Geologii Uzbekskoy SSR, Sredneaziatskiy Nauchno-Issledovatel'skiy Institut Geologii i Mineral'nogo Syr'ya (SAIGIMS), Izdatel'stvo FAN, Uzbekskoy SSR, Tashkent, 179 p. (In Russian) Google Scholar
Ryazanov, G. F. 1958. Nekotorye novye vidy fuzulinid iz pogranichnykh gorizontov srednego i verkhnego karbona severnogo-vostochnoy okrainy Bol'shogo Donbassa. Uchenye Zapiski Rostovskogo Gosudarstvennogo Universiteta, 53(9):7184. (In Russian) Google Scholar
Sada, K. and Yokoyama, T. 1970. Fusulinids of the Fusulinella Zone of the Taishaku Limestone (Studies of the stratigraphy and the microfossil faunas of the Carboniferous and Permian Taishaku Limestone in West Japan, No. 3). Memoirs of the Faculty of General Education, Hiroshima University, III (Studies in Natural Sciences), 4:4553.Google Scholar
Sada, K., Yoshida, M., and Oho, Y. 1997. Carboniferous biostratigraphy of Taishaku Limestone—Carboniferous limestone in the Ippaimizu area. Memoirs of the Faculty of Integrated Arts and Science, Hiroshima University, series IV, 23:3950.Google Scholar
Sada, K., Tanaka, K., Fujimoto, M., and Oho, Y. 1992. Carboniferous primitive fusulinacean and endothyracean faunas in the lower part of the Atetsu Limestone. Memoirs of the Faculty of Integrated Arts and Science, Hiroshima University, series IV, 17:91109.Google Scholar
Sakagami, S. and Ueno, K. 1987. On the tuffaceous conglomerate at northwestern part of Koike in the Sakawa Basin, Shikoku, Japan. Proceedings of the Japan Academy, 63, series B, No. 3:7175.Google Scholar
Sakamoto, T. and Ishibashi, T. 2002. Paleontological study of fusulinoidean fossils from the Terbat Formation, Sarawak, East Malaysia. Memoirs of the Faculty of Sciences, Kyushu University, series D, Earth and Planetary Sciences, 31:2957.Google Scholar
Sanchez de Posada, L. C. 1977. Ostracodes from the Upper Carboniferous of La Camocha coal mine (Asturias, N. Spain). Revista Española de Micropaleontología, 9/3:411438.Google Scholar
Sanchez de Posada, L. C. and Bless, M. J. M. 1999. Hollinéllidos del Moscoviense Superior (Carbonffero) del este de Asturias (N de España). Revista Española de Paleontología, n$dg extr. Homenaje al Prof. J. Truyols: 2941.Google Scholar
Sanchez de Posada, L. C. and Fohrer, B. 2001. Kirkbyoid ostracodes (Upper Carboniferous) from the Cantabrian Mountains (Spain) and Carnic Alps (Austria and Italy). Journal of Paleontology, 75:972984.Google Scholar
Sars, G. O. 1888. Nye bidrag til kundskaben om middlehavets invertebratfauna. 4. Ostracoda mediterranea. Archiv for Mathematik og Naturvidenskab, 12:173324.Google Scholar
Sashida, K. 1981. Primitive fusulinids from the Shishidedai area, northeastern Akiyoshi Plateau, southwest Japan. Science Report of the Institute of Geoscience, University of Tsukuba, Section B, Geological Sciences, 2:116.Google Scholar
Saurin, E. 1967. Endothyridae et Fusulinidae du Moscovien inférieur (Bachkirien) de la Grande Norway. Archives Géologiques du Viêt-Nam, 10:111149.Google Scholar
Saurin, E. 1970. Foraminifères du Carbonifère moyen du Laos et du Nord Viêt-Nam. I: Fusulinida. Archives Géologiques du Viêt-Nam, 13:101197.Google Scholar
Schubert, R. J. 1921. Paläontologische Daten zur Stammesgeschichte der Protozoen. Paläontologische Zeitschrift, 3:129188.Google Scholar
Schwager, C. 1887. Sub-Kingdom: Protozoa, p. 983994. In Waagen, W. (ed.), Salt-Range Fossils, 1. Productus-Limestone Fossils, 7. Coelenterata-Amorphozoa-Protozoa. Memoirs of the Geological Survey of India, Palaeontologia Indica, ser. 13.Google Scholar
Scott, H. W. 1959. Type species of Paraparchites Ulrich and Bassler. Journal of Paleontology, 33:670674.Google Scholar
Shaver, R. H. 1958. A study of Pseudobythocypris pediformis, a new name for an old ostracod. The American Midland Naturalist, 59:120137.Google Scholar
Shaver, R. H. 1961. Family Bairdiocyprididae, p. Q364Q367. In Moore, R. C. (ed.), Treatise on Invertebrate Paleontology, Pt. Q, Arthropoda 3, Crustacea, Ostracoda. University of Kansas Press and Geological Society of America, Lawrence.Google Scholar
Shcherbakova, M. V. 1988. Kamennougol'nye psevdofuzulinelly Vishersko-Chusovskogo Urala, p. 5967. In Zhavoronkova, R. A., Kochetkova, N. M., Maslov, V. A., and Chibrikova, E. V. (eds.), Biostratigrafiya Devona i Karbona Urala. Bashkirskiy Nauchnyy Tsentr, Ural'skogo Otdeleniya AN SSSR, Institut Geologii, Ufa. (In Russian) Google Scholar
Sheng, J. C. (Sheng, J. Z.). 1951. Taitzehoella, a new genus of fusulinid. Bulletin of the Geological Society of China, 31:7985.Google Scholar
Sheng, J. C. (Sheng, J. Z.). 1958. Fusulinids from the Penchi Series of the Taitzeho Valley, Liaoning. Palaeontologia Sinica, new series B, 7 (whole number 143):1119.Google Scholar
Sheng, J. C. (Sheng, J. Z.). 1962. Fusulinids of China. Science Publishing House, Beijing, 177 p. (In Chinese) Google Scholar
Sheng, J. Z., Min, Q. K., and Wang, L. L. 1976. Fusulinid zones of the Middle Carboniferous Huanglong Limestone at Jinsigang near Nanjing. Acta Palaeontologica Sinica, 15:196212. (In Chinese with English abstract) Google Scholar
Sheng, J. Z., Zhang, L. X., and Wang, J. H. 1988. Fusulinida. Science Press, Beijing, p. 240. (In Chinese) Google Scholar
Shi, G. J. and Yang, X. N. 1997. Upper Carboniferous foraminifera from Dushan, Guangde County, Anhui Province. Acta Micropalaeontologica Sinica, 14:129148. (In Chinese with English Summary)Google Scholar
Sidó, M. K. 1977. Újpaleozóos közetek biosztratigráfiai vizsgálata Vietnám északi részéböl. Földtani Közlöny, Bulletin of the Hungarian Geological Society, 107:168207 (In Hungarian with English summary) Google Scholar
Sinitsyna, Z. A. and Sinitsyn, I. I. 1987. Biostratigrafiya Bashkirskogo Yarusa v Stratotipe. Akademiya Nauk SSSR, Bashkirskiy Filial, Institut Geologii, Ministerstvo Geologii RSFSR, Proizvodstvennoe ob'edinenie $ltBashkirgeologiya$gt, Ufa, 71 p. (In Russian) Google Scholar
Skinner, J. W. 1931. Primitive fusulinids of the Mid-continent region. Journal of Paleontology, 5:253259.Google Scholar
Sohn, I. G. 1960. Paleozoic species of Bairdia and related genera. Revision of some Paleozoic ostracode genera. U.S. Geological Survey Professional Paper, 330-A:1105.Google Scholar
Sohn, I. G. 1971. New late Mississippian ostracode genera and species from northern Alaska. A revision of the Paraparchitacea. U.S. Geological Survey Professional Paper 711-A:124.Google Scholar
Sohn, I. G. 1983. Ostracodes of the “Winifrede” Limestone (Middle Pennsylvanian) in the region of the proposed Pennsylvanian system stratotype, West Virginia. Bulletins of American Paleontology, 84/316:153.Google Scholar
Solov'eva, M. F. 1969. O granites i srednego karbona na Novoy Zemle. Nauchno-Issledovatel'skiy Institut Geologii Arktiki (NIIGA), Ministerstva Geologii SSSR, Uchenye Zapiski Paleontologiya i Biostratigrafiya, 28:515. (In Russian) Google Scholar
Solov'eva, M. N. 1983. Taksonomicheskaya struktura semeystva Fusulinellidae. Akademiya Nauk SSSR, Voprosy Mikropaleontologii, 26:318. (In Russian with English abstract)Google Scholar
Solov'eva, M. N. 1986. Zonal'naya fuzulinidovaya shkala moskovskogo yarusa po materialam pereizucheniya stratotipov vnutriyarusnykh podrazdeleniy. Akademiya Nauk SSSR, Voprosy Mikropaleontologii, 28:323. (In Russian with English abstract)Google Scholar
Solov'eva, M. N. 1991. Protozoa, p. 3876. In Pavlova, E. E., Manankov, I. N., Morozova, I. P., Solov'eva, M. N., Suetenko, O. D., and Bogoslovskaya, M. F. (eds.), Permskie Bespozvonochnye Yuzhnoy Mongolii. Sovmestnaya Sovetsko-Mongol'skaya Paleontologicheskaya Ekspeditsiya, Trudy, 40. (In Russian) Google Scholar
Solov'eva, M. N. and Krasheninnikov, V. A. 1965. Chast' IV Nekotorye obshchie osobennosti kompleksov foraminifer i stratigrafii srednego karbona Afrikanskoy i Russkoy Platform. Akademiya Nauk SSSR, Voprosy Mikropaleontologii, 9:344. (In Russian) Google Scholar
Sosnina, M. I. and Nikitina, A. P. 1976. Kamennougol'nye foraminifery Primor'ya. Ministerstvo Geologii SSSR, Trudy Vsesoyuznyy Ordena Lenina Nauchno-Issledovatel'skiy Geologicheskiy Institut (VSEGEI), novaya seriya, 247 (Stratigrafiya i Paleontologiya Karbona): 1669. (In Russian) Google Scholar
Staff, H. von. 1912. Monographic der Fusulinen, Teil III: Die Fusulinen (Schellwienien) Nordamerikas. Palaeontographica, 59:157191.Google Scholar
Staff, H. von, and Wedekind, R. 1910. Der oberkarbone Foraminiferensapropelit Spitzbergens. Bulletin of the Geological Institution of the University of Upsala, 10:81123.Google Scholar
Stauffer, C. R. and Plummer, H. J. 1932. Texas Pennsylvanian conodonts and their stratigraphic relations. University of Texas Bulletin, 3201:1350.Google Scholar
Stephenson, R. A. 1993. Continental rift development in Precambrian and Phanerozoic Europe: EUROPOBE and the Dnieper-Donets Rift and Polish Trough basins. Sedimentary Geology, 86:159175.Google Scholar
Stewart, G. A. and Hendrix, W. E. 1945. Ostracoda of the Plum Brook Shale, Erie County, Ohio. Journal of Paleontology, 19:8795.Google Scholar
Stibane, F. R. 1967. Conodonten des Karbons aus den nördlichen Anden Südamerikas. Neues Jahrbuch Geologie Paläontologie, Abhandlungen, 128:329340.Google Scholar
Stovba, S., Stephenson, R. A., and Kivshik, M. 1996. Structural features and evolution of the Dniepr-Donets Basin, Ukraine, from regional seismic reflection profiles. Tectonophysics, 268:127147.Google Scholar
Sun, X. F., Gao, C. X., and Zhang, L. X. 1983. Protozoa, p. 340. In Xi'an Institute of Geology and Mineral Resources (ed.), Paleontological Atlas of Northwest China, Shaanxi, Gansu and Ningxia Volume. Pt. 2. Upper Palaeozoic. Geological Publishing House, Beijing. (In Chinese) Google Scholar
Sweet, W. C. 1988. The Conodonta: Morphology, taxonomy, paleoecology, and evolutionary history of a long-extinct animal phylum. Oxford Monographs on Geology and Geophysics, 10, 212 p.Google Scholar
Thompson, M. L. 1935. The fusulinid genus Staffella in America. Journal of Paleontology, 9:111120.Google Scholar
Thompson, M. L. 1937. Fusulinids of the subfamily Schubertellinae. Journal of Paleontology, 11:118125.Google Scholar
Thompson, M. L. 1942. New genera of Pennsylvanian fusulinids. American Journal of Science, 240:403420.Google Scholar
Thompson, M. L. 1944. Pennsylvanian Morrowan rocks and fusulinids of Kansas. University of Kansas Publication, State Geological Survey of Kansas Bulletin, 52:409431.Google Scholar
Thompson, M. L. 1948. Studies of American fusulinids. University of Kansas Paleontological Contributions, Protozoa, 1:1184.Google Scholar
Thompson, M. L. 1951. New genera of fusulinid foraminifera. Contributions from the Cushman Foundation for Foraminiferal Research, 2(4):115119.Google Scholar
Thompson, M. L. 1954. American Wolfcampian fusulinids. University of Kansas Paleontological Contributions, Protozoa, 5:1226.Google Scholar
Thompson, M. L. and Foster, C. L. 1937. Middle Permian fusulinids from Szechuan, China. Journal of Paleontology, 11:126144.Google Scholar
Toriyama, R. 1941. The Carboniferous foraminifera from the Sosan District, North Heian-Do, Tyosen. The Journal of Geological Society of Japan, 48:563567.Google Scholar
Toriyama, R. 1944. The fusulinids in the limestone conglomerate of the Sakuradani area in the province of Awa. Japanese Journal of Geology and Geography, 19(1–4):6782.Google Scholar
Toriyama, R. 1947. On the fusulinids in the Yasuba type of limestone conglomerate in the Kwanto Mountainland (Studies on the Yasuba Conglomerate and its allies-IV). Japanese Journal of Geology and Geography, 20(2–4):3339.Google Scholar
Toriyama, R. 1953. New peculiar fusulinid genus from the Akiyoshi Limestone of southwestern Japan. Journal of Paleontology, 27:251256.Google Scholar
Toriyama, R. 1958. Geology of Akiyoshi, Pt. III, Fusulinids of Akiyoshi. Memoirs of the Faculty of Science, Kyushu University, series D, Geology, 7:1264.Google Scholar
Tschigova, V. A. 1958. Ostrakody Kizelovskogo Gorizonta Saratovsko-Stalingradskogo povolshya. Trudy vsesoyuznij neftegazovij nauchno-issledovatelskij institut (VNII) Moskva, 14:5885.Google Scholar
Tschigova, V. A. 1959. Raschlenenie produktivnikh otlozhenij nizhnego karbona Saratovsko-Stalingradskogo povolzhya po ostrakodam. Trudy, vsesoyuznij neftegazovij nauchno-issledovatelskij institut (VNII) Moskva, 20 (voprosy neftepromyslovoj geologii):186221. (In Russian) Google Scholar
Ueno, K. 1989. Carboniferous and Lower Permian foraminiferal biostratigraphy in the Akiyoshi Limestone Group (Studies of the Upper Palaeozoic foraminifers in the Akiyoshi Limestone Group, Southwest Japan. Pt. I). Bulletin of the Akiyoshi-dai Museum of Natural History, 24:139. (In Japanese with English abstract)Google Scholar
Ueno, K. 1991. Upper Carboniferous fusulinaceans from the Akiyoshi Limestone Group, southwest Japan. Transactions and Proceedings of the Palaeontological Society of Japan, new series, 163:807827.Google Scholar
Ueno, K. and Igo, H. 1997. Late Paleozoic foraminifers from the Chiang Dao area, northern Thailand: Geologic age, faunal affinity, and paleobiogeographic implications, p. 339358. In Podemski, M., Dybova-Jachowicz, S., Jaworowski, K., Jureczka, J., and Wagner, R. (eds.), Proceedings of the XIII International Congress on the Carboniferous and Permian, Pt. 1, Prace Panstwowego Instytutu Geologicznego, 157(1).Google Scholar
Ueno, K. and Nakazawa, T. 1993. Carboniferous foraminifers from the lowermost part of the Omi Limestone Group, Niigata Prefecture, central Japan. Science Report of the Institute of Geoscience, University of Tsukuba, Section B, Geological Sciences, 14:151.Google Scholar
Ueno, K. and Villa, E. 1998. Fusulinids from the Donets Basin: Preliminary stratigraphic observations. I.U.G.S. Subcommission on Carboniferous Stratigraphy, Newsletter on Carboniferous Stratigraphy, 16:67.Google Scholar
Ueno, K., Okuzawa, K., and Hisada, K. 1999. Carboniferous foraminifers from the Otakatori-yama area, eastern Kanto Mountains, Central Japan. Annual Report of the Institute of Geoscience, University of Tsukuba, 25:2733.Google Scholar
Ueno, K., Wang, Y. J., and Wang, X. D. 2003. Fusulinoidean faunal succession of a Paleo-Tethyan oceanic seamount in the Changning-Menglian Belt, West Yunnan, Southwest China: An overview. The Island Arc, 12:145161.Google Scholar
Ueno, K., Maruyama, T., Hisada, K., and Igo, H. 1994. Carboniferous fossils from limestone pebbles in a conglomerate of the Early Cretaceous Yuno Formation, Okayama Prefecture, southwest Japan. The Journal of the Geological Society of Japan, 100:181184.Google Scholar
Ueno, K., Nagai, K., Nakornsri, N., and Sugiyama, T. 1994. Middle Carboniferous foraminifers from Ban Sup, Changwat Loei, northeastern Thailand. Science Report of the Institute of Geoscience, University of Tsukuba, Section B, Geological Sciences, 15:1545.Google Scholar
Ueno, K., Nagai, K., Nakornsri, N., and Sugiyama, T. 1996. A new Moscovian foraminiferal fauna from Huai Luang, east of Wang Saphung, Changwat Loei, Northeast Thailand. Journal of Southeast Asian Earth Sciences, 14:7989.Google Scholar
Ulrich, E. O. 1891. New and little known American Paleozoic Ostracoda (2). Journal of the Cincinnati Society of Natural History, 13:173211.Google Scholar
Vachard, D. 1990a. A new biozonation of the limestones from Terbat area, Sarawak, Malaysia, p. 183208. In Fontaine, H. (ed.), Ten Years of CCOP Research on the Pre-Tertiary of East Asia. CCOP Technical Paper, 20.Google Scholar
Vachard, D. 1990b. New data on foraminifera, algae and pseudo-algae of the Viséan and Bashkirian (Lower-Middle Carboniferous) from Northeast Thailand. Geologisches Jahrbuch Reihe B, 73:91109.Google Scholar
Vachard, D. 1996. Iran, p. 491521. In Wagner, R. H., Winkler Prins, C. F., and Granados, L. F. (eds.), The Carboniferous of the World III. The Former U.S.S.R., Mongolia, Middle Eastern Platform, Afghanistan, & Iran (IUGS Publication No. 33). Instituto Tecnológico GeoMinero de España, Madrid, and Nationaal Natuurhistorisch Museum, Leiden.Google Scholar
Vachard, D. and Beckary, S. 1991. Algues et foraminifèrs bashkiriens des coal balls de la mine Rosario (Truébano, Leon, Espagne). Revue de Paléobiologie, 10:315357.Google Scholar
Vachard, D. and Maslo, A. 1996. Precisions biostratigraphiques et micropaléontologiques sur le Bashkirien d'Ukraine (Carbonifère moyen). Revue de Paléobiologie, 15:357383.Google Scholar
Vdovenko, M. V. 1971. Rannevizeyskie Ozawainellinae Bol'shogo Donbassa. Geologicheskiy Zhurnal, 31:111117. (In Russian) Google Scholar
Vdovenko, M. V. 2000. Atlas of Foraminifera from the Upper Viséan and Lower Serpukhovian (Lower Carboniferous) of the Donets Basin (Ukraine). Museum für Naturkunde Magdeburg, Abhandlungen und Berichte für Naturkunde, 23:93178. (Imprinted 2001) Google Scholar
Velikovskaya, E. M. 1977. Kamennougol'nye Otlozheniya Russkoy Platformy. Ocherki Regional'noy Geologii SSSR, Izdatel'stvo Moskovskogo Universiteta, 177 p. (In Russian) Google Scholar
Vever, V. H., Gorskiy, I. I., Librovich, L. S., Likharev, B. K., Nikiforova, A. I., Ruzhentsov, V. E., Faas, A. V., Fomichev, V. D., Chernyshev, B. I., Khabakov, A. V., and Yakovlev, I. I. 1939. Atlas Rukovodyashchikh Form Iskopaemykh Faun SSSR, Tom 5. Sredniy i Verkhniy Otdely Kamennougol'noy Sistemy. Tsentral'nyy Nauchno-Issledovatel'skiy Geologo-Razvedochnyy Institut, GONTI, Redaktsiya Gorno-Toplivnoy i Geologo-Razvedochnoy Literatury, Leningrad/Moskva, 180 p. (In Russian) Google Scholar
Villa, E. 1989. Foraminíferos Bashkirienses de la Sierra del Sueve (Cuenca Carbonífera Central, Zona Cantábrica, N. W de España). Revista Española de Paleontología, 4:8189.Google Scholar
Villa, E. 1995. Fusulinaceos Carboniferos del este de Asturias (N de España). Biostratigraphie du Paléozoique, Université Claude Bernard-Lyon, 13:1261.Google Scholar
Villa, E. and van Ginkel, A. C. 2000. Some Late Moscovian and Kasimovian fusulinaceans from the Las Llacerias section (Cantabrian Mountains, Spain). Journal of Foraminiferal Research, 30:219243.Google Scholar
Villa, E., van Ginkel, A. C., Leyva, F., Martínez-Chacón, M., Méndez, C., Rodriguez-Gonzalez, R. M., Rodriguez, S., and Sanchez de Posada, L. C. 1993. Fossil content of the Moscovian-Kasimovian boundary in a section of the Picos de Europa area (Carboniferous, NW Spain), p. 385406. In Archangelsky, S. (ed.), Douzième Congrès International de la Stratigraphie et Gélogie du Carbonifère et Permien, Compte Rendu, 2. Alleres Gráficos Curt Latté S. A. I. C., Buenos Aires.Google Scholar
Vissarionova, A. Ya. 1948. Primitivnye fuzulinidy iz nizhnego karbona evropeyckoy chasti SSSR. Akademiya Nauk SSSR, Trudy Instituta geologicheskikh nauk, 62 (Geologicheskaya Seriya, No. 19):216226. (In Russian) Google Scholar
Wang, D. Y. 1987. The Carboniferous and the early Early Permian fusulinid faunas from Henan, North China, p. 54104. In Wang, D. Y., Yan, G. S., Jiang, Y., Xi, Y. H., and Feng, J. C. (eds.), Stratigraphy and Palaeontology of Carboniferous and Early Early Permian in Henan. China Prospect Publishing House, Beijing. (In Chinese with English abstract) Google Scholar
Wang, J. X. 1978. Carboniferous fusulinids, p. 275277. In Working Group of Stratigraphy of Shanxia, Geological Bureau of Hubei (ed.), Stratigraphy and Paleontology of the Sinian to the Permian in Xiadong Region. Geological Publishing House, Beijing. (In Chinese) Google Scholar
Wang, K. L., Xia, G. Y., and Tang, B. L. 1963. Carboniferous Protozoa, p. 4868. In No. 3 Department, Chinese Academy of Geological Sciences (ed.), Handbook of Fossils from Nanling. China Industry Publishing House, Beijing. (In Chinese) Google Scholar
Wang, L. L. 1981. Some new species of fusulinids from the Carboniferous-Permian of Anhui, China. Acta Palaeontologica Sinica, 20:127137. (In Chinese with English abstract) Google Scholar
Wang, Y. H. 1987. Late Carboniferous fusulinids in Middle and Lower Yangtze Valley. Bulletin of the Nanjing Institute of Geology and Mineral Resources, Chinese Academy of Geological Sciences, 8(2):8591. (In Chinese with English abstract) Google Scholar
Wang, Y. H., Wang, L. L., Wang, J. H., Zhu, Z. G., Lin, G. W., Zhang, L. X., and Quian, Q. 1982. Protozoa, p. 5108. In Nanjing Institute of Geology and Mineral Resources (ed.), Paleontological Atlas of East China, 2. Late Paleozoic Volume. Geological Publishing House, Beijing. (In Chinese) Google Scholar
Wang, Y. J., Sheng, J. Z., and Zhang, L. X. 1981. Fusulinids from Xizang of China, p. 1080. In Nanjing Institute of Geology and Palaeontology, Academia Sinica (ed.), Paleontology of Xizang, Book 3. Science Publishing House, Beijing. (In Chinese with English abstract) Google Scholar
Wang, Y. J., Yuan, X. Q., and Geng, G. C. 1992. A new advance of Carboniferous fusulinid study and preliminary exploration of the paleogeography in the Ordos Basin. Acta Micropalaeontologica Sinica, 9:127150. (In Chinese with English summary) Google Scholar
Wang, Z. H., Rui, L., and Zhang, L. X. 1987. Late Carboniferous-Early Permian conodont and fusulinid biostratigraphy of Nashui, Luodian, Guizhou. Journal of Stratigraphy, 11:103115. (In Chinese) Google Scholar
Wang, Z. Y., Wang, Y. H., and Zhang, L. X. 1992. Profusulinella fauna from the Fuzhou Gulf of Liaoning. Acta Micropalaeontologica Sinica, 9:415421. (In Chinese with English summary) Google Scholar
Wilson, C. W. 1933. Fauna of the McAlester shale, Pennsylvanian, of Muskogee County, Oklahoma. Journal of Paleontology, 7:412422.Google Scholar
Wu, X. Y., Li, X. X., Shen, G. L., Liang, X. L., Zhang, L. X., Wang, Z. H., Zhu, H. C., Tong, Z. S., Wu, A. B., and Li, L. 1989. Recent research on the Carboniferous stratigraphy of Jingyuan, eastern Gansu, p. 124143. In Jin, Y. G. and Li, C. (eds.), Onzième Congrès International de Stratigraphie et de Géologie du Carbonifère, Compte Rendu, Tome 2. Nanjing University Press, Nanjing.Google Scholar
Xia, G. Y. and Zhang, Z. C. 1985. Protozoa, p. 32150. In Tianjin Institute of Geology and Mineral Resources, Chinese Academy of Geological Sciences (ed.), Paleontological Atlas of North China, 1. Paleozoic Volume. Geological Publishing House, Beijing. (In Chinese) Google Scholar
Xie, S. G. 1982. Protozoa, p. 273. In Geological Bureau of Hunan (ed.), The Palaeontological Atlas of Hunan. Geological Memoires, Series 2, Number 1. Geological Publishing House, Beijing. (In Chinese) Google Scholar
Ye, G., Lin, J. X., and Gu, D. Y. 1987. Early Carboniferous foraminifera from Longmenshan, Sichuan, China. Acta Micropalaeontologica Sinica 4:281292. (In Chinese with English summary) Google Scholar
Zanina, I. E. 1956. Ostrakody vizejskogo yarusa podmoskovnogo bassejna. Trudy vsesoyuznogo neftyanogo nauchnoissledovatelskogo geologorazvedochnogo instituta (VNIGRI) Leningrad, novaya seriya, 98 (mikrofauna SSSR, sbornik 8):185309. (In Russian) Google Scholar
Zanina, I. E. 1971. Ostrakody kizelovskogo opornogo razrez nizhnego karbona, p. 134183. In Ivanova, V. A. (ed.), Paleozojskie ostrakody iz opornykh razrezov Evropejskoj chasti SSSR. Izdatelstvo Nauka, Moskva.Google Scholar
Zeng, X. L., Guo, X. J., and Chen, X. H. 1996. 7.1 Fusulinids, p. 164190. In Zeng, X. L., Zhu, W. Y., He, X. Y., F. K. Teng, and others (eds.), Permo-Carboniferous Biostratigraphy and Sedimentary Environment of West Qinling. Geological Publishing House, Beijing. (In Chinese with English abstract and description of new species) Google Scholar
Zhang, L. X. 1974. Carboniferous fusulinids, p. 256265. In Nanjing Institute of Geology and Palaeontology, Academia Sinica (ed.), Stratigraphical and Paleontological Atlas of West South China. Science Publishing House, Beijing. (In Chinese) Google Scholar
Zhang, L. X. 1982. Fusulinids of eastern Qinghai-Xizang Plateau, p. 119244. In Regional Geology Surveying Team, Bureau of Geology of Sichuan Province, and Nanjing Institute of Geology and Palaeontology, Chinese Academy of Science (eds.), Stratigraphy and Palaeontology in W. Sichuan and E. Xizang, China, Pt. 2, People's Publishing House of Sichuan, Chengdu. (In Chinese with English abstract) Google Scholar
Zhang, L. X. 1996. Fusulinids, p. 197238. In Kong, X. Z., Xu, H. L., Li, R. L., Chang, J. L., Liu, L. J., Zhao, X. H., Zhang, L. X., Liao, Z. T., and Zhu, H. C. (eds.), Late Paleozoic Coal-Bearing Strata and Biota in Shanxi, China. Shanxi Science and Technology Press, Taiyuan. (In Chinese with English summary) Google Scholar
Zhang, L. X. 1998. Fusulinids from Karakorum and Kunlun region, p. 5771. In The Comprehensive Scientific Expedition to the Qinghai-Xizang Plateau, Chinese Academy of Sciences (ed.), Palaeontology of the Karakorum-Kunlun Mountains. Science Press, Beijing. (In Chinese with English abstract) Google Scholar
Zhang, L. X. and Bao, J. L. 1986. Upper Carboniferous fusulinids on the southern slope of Mt. Burhan Budai, Qinghai, p. 73120. In Institute of Geological Science of Qinghai Province and Nanjing Institute of Geology and Palaeontology, Academia Sinica (eds.), Carboniferous and Triassic Strata and Fossils from the Southern Slope of Mt. Burhan Budai, Qinghai, China. Anhui Science and Technology Press, Gefei. (In Chinese with English abstract) Google Scholar
Zhang, L. X. and Guo, J. X. 1985. Weiningian fusulinids from Beishan area, Gansu. Acta Micropalaeontologica Sinica, 2:259265. (In Chinese with English summary) Google Scholar
Zhang, L. X. and Jiang, R. C. 1984. Weiningian fusulinids from Tangshan City, Hebei. Acta Micropalaeontologica Sinica, 1:138143. (In Chinese with English summary) Google Scholar
Zhang, L. X. and Li, W. Y. 1987. Carboniferous and lower Lower Permian (Chihsia Stage) fusulinids of Dafeng district, northern Jiangsu. Acta Palaeontologica Sinica, 26:392410. (In Chinese with English summary) Google Scholar
Zhang, L. X. and Rui, L. 1980. Fusulinids from the Binhai Xian, northern Jiangsu. Acta Palaeontologica Sinica, 19:321326. (In Chinese with English abstract) Google Scholar
Zhang, L. X., Zhou, J. P., Niu, B. X., and Wang, H. 1987. Weiningian fusulinids from the Zibo area of Shangdong. Acta Micropalaeontologica Sinica, 4:247264. (In Chinese with English summary) Google Scholar
Zhang, L. X., Wang, Y. J., Wang, K. L., Wang, H. J., Mu, X. N., Zhang, S. Z., Li, P. J., and Deng, Z. Q. 1985. Paleontology of the southern part of the Tuomuerfen region, p. 130160. In Scientific Expedition Team for the Tuomuerfeng Region, Academia Sinica (ed.), Geology and Paleontology of the Tuomuerfeng Region in Tien-Shan. People's Publishing House of Xinjiang, Urumqi. (In Chinese) Google Scholar
Zhang, L. X., Rui, L., Zhou, J. P., Liao, Z. T., Wu, X. Y., Wang, C. Y., Wang, K. L., Zhao, J. M., Wang, Y. J., and Xia, F. S. 1988. Biostratigraphic study on the Carboniferous of the Lower Yangtze Peneplatform in Jiangsu Region, p. 219313. In Academy of Geological Sciences, Jiangsu Bureau of Petroleum Prospecting, and Nanjing Institute of Geology and Palaeontology, Academia Sinica (eds.), Stratigraphy and Palaeontology of Jiangsu, Series 1. Sinian-Triassic Biostratigraphy of the Lower Yangtze Peneplatform in Jiangsu Region. Nanjing University Press, Nanjing. (In Chinese) Google Scholar
Zhu, R. and Lin, J. X. 1987. Foraminifers from the Qijiagou Formation in the southern margin of the Jungar Basin, Xinjiang, and their stratigraphic significance. Experimental Petroleum Geology, 9:321330. (In Chinese) Google Scholar
Zhu, X. F. 1985. Early Upper Carboniferous fusulinids from Ulan County, Qinghai Province. Bulletin of the Institute of Geology, Chinese Academy of Geological Sciences, 11:120. (In Chinese with English summary and description of new species) Google Scholar
Zhu, X. F. and Zhang, Z. M. 1987. Chapter 8, Fusulinida. In Institute of Geology, Xinjiang Geological Bureau, and Institute of Geology, Chinese Academy of Geological Sciences (eds.), The Carboniferous and Permian Stratigraphy and Biota in Kalpin Region, Xinjiang. Marine Publishing House, Beijing. (In Chinese) Google Scholar
Zhu, Z. L. 1995. Shachella—a new fusulinid genus of early Late Carboniferous from the southwestern margin of Tarim Basin. Acta Micropalaeontologica Sinica, 12:127132. (In Chinese with English summary) Google Scholar
Zhuang, S. Q. 1984. Fusulinids from the Maping Group, at Dala of Panxian, Guizhou. Bulletin of the Mining College of China, 1984(1):5974. (In Chinese with English abstract) Google Scholar