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Ultraviolet Radiation (UVR) and Risk of Developing Multiple Sclerosis (MS)

Published online by Cambridge University Press:  02 December 2014

Sharon Warren
Affiliation:
University of Alberta, Edmonton, Alberta, Canada
Kenneth G. Warren
Affiliation:
University of Alberta, Edmonton, Alberta, Canada
Karen V. L. Turpin
Affiliation:
University of Alberta, Edmonton, Alberta, Canada
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Abstract

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Type
Editorial
Copyright
Copyright © Canadian Neurological Sciences Federation 2011

References

1 Acheson, ED, Bachrach, CA, Wright, FM. Some comments on the relationship of the distribution of multiple sclerosis to latitude, solar radiation and other variables. Acta Psychiatr Scand. 1960; 35 Suppl 147:132–47.Google Scholar
2 Sloka, S, Silva, C, Pryse-Phillips, W, Patten, S, Metz, L, Wee Yong, V. A quantitative analysis of suspected environmental causes of MS. Can J Neurol Sci. 2011;38(1):98105.Google Scholar
3 Wolfson, C, Wolfson, DB, Zielinski, JM. On the estimation of the latent period of multiple sclerosis. Neuroepidemiology. 1989;8: 239–48.Google Scholar
4 Sloka, JS, Pryse-Phillips, WEM, Stefanelli, M. The geospatial relationship between ultraviolet radiation and multiple sclerosis in Newfoundland. Can J Neurol Sci. 2008;35(1):6974.Google Scholar
5 Beretich, BD, Beretich, TM. Explaining multiple sclerosis by ultraviolet exposure: a geospatial analysis. Multiple Sclerosis. 2009;15:8918.Google Scholar
6 Staples, J, Ponsonby, A-L, Lim, L. Low maternal exposure to ultraviolet radiation in pregnancy, month of birth, and risk of multiple sclerosis in offspring: longitudinal analysis. BMJ. 2010;340.c1640.Google Scholar
7 van der Mei, IAF, Ponsonby, A-L, Blizzard, L, Dwyer, T. Regional variation in multiple sclerosis prevalence in Australia and its association with ambient ultraviolet radiation. Neuroepidemiology. 2001;20:168–74.Google Scholar
8 Lilienfeld, AM, Lilienfeld, DE. Foundations of epidemiology. 2nd ed. Oxford University Press; Oxford, United Kingdom: 1980.Google Scholar
9 Norman, JE Jr, Cook, SD, Dowling, PC. Pilot survey of household pets among veterans with multiple sclerosis and age-matched controls. Arch Neurol. 1983;40:2134.CrossRefGoogle ScholarPubMed
10 Leibowitz, U, Alter, M. Multiple sclerosis: clues to its cause. North Holland, Amsterdam, Netherlands, 1978.Google Scholar
11 Warren, S, Warren, KG. Multiple sclerosis and diabetes mellitus: further evidence of a relationship. Can J Neurol Sci. 1982;9: 4159.Google Scholar
12 Kampman, MT, Wilsgaard, T, Mellgren, SI. Outdoor activities and diet in childhood and adolescence relate to MS risk above the Arctic Circle. J Neurol. 2007;254:4717.Google Scholar
13 van der Mei, IAF, Ponsonby, A-L, Dwyer, T, et al. Past exposure to sun, skin phenotype, and risk of multiple sclerosis: a casecontrol study. BMJ. 2003;327:316–22.Google Scholar
14 Hayes, CE, Cantorna, MT, Deluca, HF. Vitamin D and multiple sclerosis. Proc Sci Exp Biol Med. 1997;216:21–7.Google Scholar
15 Hutter, CD, Laing, P. Multiple sclerosis: sunlight, diet, immunology and aetiology. Med Hypotheses. 1996;4:6774.Google Scholar
16 Kripke, ML. Ultraviolet radiation and immunology: something new under the sun. Cancer Res. 1995;54:838–43.Google Scholar
17 Axelson, O, Landtblom, AM, Flodin, U. Multiple sclerosis and ionizing radiation. Neuroepidemiology. 2001;20:1768.CrossRefGoogle ScholarPubMed
18 McMichael, AJ, Hall, AJ. Does immunosuppressive ultraviolet radiation explain the latitude gradient for multiple sclerosis? Epidemiology. 1997;8:6425.Google Scholar