A mathematical model is developed to elucidate the effects of biophysical transport processes (nutrient diffusion, cell motility, and chemotaxis) along with biochemical reaction processes (cell growth and death, nutrient uptake) upon steady-state bacterial population growth in a finite one-dimensional region. The particular situation considered is that of growth limitation by a nutrient diffusing from an adjacent phase not accessible to the bacteria. It is demonstrated that the cell motility and chemotaxis properties can have great influence on steady-state population size. In fact, motility effects can be as significant as growth kinetic effects, in a manner analogous to diffusion- and reaction-limited regimes in chemically reacting system...
Bacterial chemotaxis, the directed movement of cells along gradients of chemoattractants, is among t...
We present a mathematical model for the motion of a bacterial population in prescribed attractant or...
Local chemical gradients can have a significant impact on bacterial population distributions within ...
A mathematical model is developed to elucidate the effects of biophysical transport processes (nutri...
Bacterial cells navigate around their environment by directing their movement along chemical gradien...
Abstract: Bacteria can chemotactically migrate up attractant gradients by controlling run-and-tumble...
Bacterial cells navigate their environment by directing their movement along chemical gradients. Thi...
In this dissertation, we present a comprehensive study on two sets of phenomenological models examin...
A differential equation describing the chemotactic migration of a bacterial population in a fixed ex...
We review the application of mathematical modeling to understanding the behavior of populations of c...
International audienceBacteria can chemotactically migrate up attractant gradients by controlling ru...
Thesis (PhD)--University of Pretoria, 2022.The physiological structure of microbial communities in n...
Bacterial chemotaxis, the directed movement of cells along gradients of chemoattractants, is among t...
Bacterial chemotaxis, the directed movement of cells along gradients of chemoattractants, is among t...
Bacterial chemotaxis, the directed movement of cells along gradients of chemoattractants, is among t...
Bacterial chemotaxis, the directed movement of cells along gradients of chemoattractants, is among t...
We present a mathematical model for the motion of a bacterial population in prescribed attractant or...
Local chemical gradients can have a significant impact on bacterial population distributions within ...
A mathematical model is developed to elucidate the effects of biophysical transport processes (nutri...
Bacterial cells navigate around their environment by directing their movement along chemical gradien...
Abstract: Bacteria can chemotactically migrate up attractant gradients by controlling run-and-tumble...
Bacterial cells navigate their environment by directing their movement along chemical gradients. Thi...
In this dissertation, we present a comprehensive study on two sets of phenomenological models examin...
A differential equation describing the chemotactic migration of a bacterial population in a fixed ex...
We review the application of mathematical modeling to understanding the behavior of populations of c...
International audienceBacteria can chemotactically migrate up attractant gradients by controlling ru...
Thesis (PhD)--University of Pretoria, 2022.The physiological structure of microbial communities in n...
Bacterial chemotaxis, the directed movement of cells along gradients of chemoattractants, is among t...
Bacterial chemotaxis, the directed movement of cells along gradients of chemoattractants, is among t...
Bacterial chemotaxis, the directed movement of cells along gradients of chemoattractants, is among t...
Bacterial chemotaxis, the directed movement of cells along gradients of chemoattractants, is among t...
We present a mathematical model for the motion of a bacterial population in prescribed attractant or...
Local chemical gradients can have a significant impact on bacterial population distributions within ...