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Title: A simple reaction–diffusion system as a possible model for the origin of chemotaxis

Journal Article · · Journal of Biological Dynamics
 [1];  [1]
  1. Department of Mathematics, Duke University, Durham, NC, USA

Not Available

Sponsoring Organization:
USDOE
OSTI ID:
2006697
Journal Information:
Journal of Biological Dynamics, Journal Name: Journal of Biological Dynamics Journal Issue: 1 Vol. 17; ISSN 1751-3758
Publisher:
Informa UK LimitedCopyright Statement
Country of Publication:
Country unknown/Code not available
Language:
English

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Dynamics of Cdc42 network embodies a Turing-type mechanism of yeast cell polarity journal March 2008
A Mass Conserved Reaction–Diffusion System Captures Properties of Cell Polarity journal June 2007
The flux limited Keller–Segel system; properties and derivation from kinetic equations journal November 2019
Sex and flow: the consequences of fluid shear for sperm–egg interactions journal October 2007
The Diffusion Limit of Transport Equations II: Chemotaxis Equations journal January 2002
Monocyte Chemoattractant Protein-1 (MCP-1): An Overview journal June 2009
Chemotaxis during neural crest migration journal July 2016
Model for chemotaxis journal February 1971
The Diffusion Limit of Transport Equations Derived from Velocity-Jump Processes journal January 2000
Mating yeast cells use an intrinsic polarity site to assemble a pheromone-gradient tracking machine journal September 2019
Chemotaxis: from kinetic equations to aggregate dynamics journal March 2012
Chemotaxis and Chemokinesis of Human Spermatozoa to Follicular Factors1 journal April 1994
Monocyte chemotactic protein-1 (MCP-1), -2, and -3 are chemotactic for human T lymphocytes. journal March 1995

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