Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Wang, Zhi-An
Winkler, Michael
and
Wrzosek, Dariusz
2011.
Singularity formation in chemotaxis systems with volume-filling effect.
Nonlinearity,
Vol. 24,
Issue. 12,
p.
3279.
Banerjee, Santo
Misra, Amar P.
and
Rondoni, L.
2012.
Spatiotemporal evolution in a (2+1)-dimensional chemotaxis model.
Physica A: Statistical Mechanics and its Applications,
Vol. 391,
Issue. 1-2,
p.
107.
Wang, Zhi-An
Winkler, Michael
and
Wrzosek, Dariusz
2012.
Global Regularity versus Infinite-Time Singularity Formation in a Chemotaxis Model with Volume-Filling Effect and Degenerate Diffusion.
SIAM Journal on Mathematical Analysis,
Vol. 44,
Issue. 5,
p.
3502.
Pigozzo, Alexandre Bittencourt
Macedo, Gilson Costa
Weber dos Santos, Rodrigo
and
Lobosco, Marcelo
2012.
Computational Modeling of Microabscess Formation.
Computational and Mathematical Methods in Medicine,
Vol. 2012,
Issue. ,
p.
1.
Zhou, Jun
2013.
Spatiotemporal pattern formation of a diffusive bimolecular model with autocatalysis and saturation law.
Computers & Mathematics with Applications,
Vol. 66,
Issue. 10,
p.
2003.
Cooper, Andrea K.
and
Kim, Peter S.
2014.
Mathematical Models of Tumor-Immune System Dynamics.
Vol. 107,
Issue. ,
p.
21.
Wang, Liangchen
Mu, Chunlai
and
Zheng, Pan
2014.
On a quasilinear parabolic–elliptic chemotaxis system with logistic source.
Journal of Differential Equations,
Vol. 256,
Issue. 5,
p.
1847.
Ma, Manjun
and
Wang, Zhi-An
2015.
Global bifurcation and stability of steady states for a reaction-diffusion-chemotaxis model with volume-filling effect.
Nonlinearity,
Vol. 28,
Issue. 8,
p.
2639.
Li, Xie
and
Xiang, Zhaoyin
2015.
Boundedness in quasilinear Keller-Segel equations with nonlinear sensitivity and logistic source.
Discrete & Continuous Dynamical Systems - A,
Vol. 35,
Issue. 8,
p.
3503.
Zheng, Pan
Mu, Chunlai
and
Hu, Xuegang
2015.
Boundedness and blow-up for a chemotaxis system with generalized volume-filling effect and logistic source.
Discrete & Continuous Dynamical Systems - A,
Vol. 35,
Issue. 5,
p.
2299.
Ma, Manjun
Gao, Meiyan
Tong, Changqing
and
Han, Yazhou
2016.
Chemotaxis-driven pattern formation for a reaction–diffusion–chemotaxis model with volume-filling effect.
Computers & Mathematics with Applications,
Vol. 72,
Issue. 5,
p.
1320.
Ma, Manjun
and
Wang, Zhian
2017.
Patterns in a generalized volume-filling chemotaxis model with cell proliferation.
Analysis and Applications,
Vol. 15,
Issue. 01,
p.
83.
Dong, Ying
and
Li, Xie
2017.
Global solutions of a two‐dimensional chemotaxis system with attraction and repulsion rotational flux terms.
Mathematical Methods in the Applied Sciences,
Vol. 40,
Issue. 6,
p.
2248.
Davis, P N
van Heijster, P
and
Marangell, R
2017.
Absolute instabilities of travelling wave solutions in a Keller–Segel model.
Nonlinearity,
Vol. 30,
Issue. 11,
p.
4029.
Dong, Ying
and
Xiang, Zhaoyin
2018.
Global large-data generalized solutions in a chemotactic movement with rotational flux caused by two stimuli.
Nonlinear Analysis: Real World Applications,
Vol. 41,
Issue. ,
p.
549.
Ma, Manjun
Gao, Meiyan
and
Carretero-González, R.
2019.
Pattern formation for a two-dimensional reaction-diffusion model with chemotaxis.
Journal of Mathematical Analysis and Applications,
Vol. 475,
Issue. 2,
p.
1883.
Davis, P.N.
van Heijster, P.
and
Marangell, R.
2019.
Spectral stability of travelling wave solutions in a Keller–Segel model.
Applied Numerical Mathematics,
Vol. 141,
Issue. ,
p.
54.
Demir, Esin
Yaman, Y Ilker
Basaran, Mustafa
and
Kocabas, Askin
2020.
Dynamics of pattern formation and emergence of swarming in Caenorhabditis elegans.
eLife,
Vol. 9,
Issue. ,
Peng, Hongyun
2021.
On the attraction–repulsion chemotaxis system with volume-filling effect.
Journal of Mathematical Physics,
Vol. 62,
Issue. 11,
Almeida, Luis
Estrada-Rodriguez, Gissell
Oliver, Lisa
Peurichard, Diane
Poulain, Alexandre
and
Vallette, Francois
2021.
Treatment-induced shrinking of tumour aggregates: a nonlinear volume-filling chemotactic approach.
Journal of Mathematical Biology,
Vol. 83,
Issue. 3,