The random walk ofAzospirillum brasilense
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Publication:5258086
DOI10.1080/17513750902773914zbMath1315.92014OpenAlexW2019975962WikidataQ51761250 ScholiaQ51761250MaRDI QIDQ5258086
Kevin B. Flores, Karl Peter Hadeler
Publication date: 25 June 2015
Published in: Journal of Biological Dynamics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1080/17513750902773914
diffusion approximationtransport equationdamped wave equationparabolic scalingmoment approximationbacterial motion
Applications of Brownian motions and diffusion theory (population genetics, absorption problems, etc.) (60J70) Cell movement (chemotaxis, etc.) (92C17)
Related Items (1)
Cites Work
- Biased random walk models for chemotaxis and related diffusion approximations
- Kinetic models for chemotaxis and their drift-diffusion limits
- The Diffusion Limit of Transport Equations Derived from Velocity-Jump Processes
- THE LANGEVIN OR KRAMERS APPROACH TO BIOLOGICAL MODELING
- ON DIFFUSION BY DISCONTINUOUS MOVEMENTS, AND ON THE TELEGRAPH EQUATION
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