Local chemical gradients can have a significant impact on bacterial population distributions within subsurface environments by evoking chemotactic responses. These local gradients may be created by consumption of a slowly diffusing nutrient, generation of a local food source from cell lysis, or dissolution of nonaqueous phase liquids trapped within the interstices of a soil matrix. We used a random walk simulation algorithm to study the effect of a local microscopic gradient on the swimming behavior of bacteria in a porous medium. The model porous medium was constructed using molecular dynamics simulations applied to a fluid of equal-sized spheres. The chemoattractant gradient was approximated with spherical symmetry, and the parameters for...
The Lattice Boltzmann method (LBM) has been widely used because it is well-suited to model flow and ...
Most bacteria at certain stages of their life cycle are able to move actively; they can swim in a li...
Most bacteria at certain stages of their life cycle are able to move actively; they can swim in a li...
Local chemical gradients can have a significant impact on bacterial population distributions within ...
Bacterial migration is important in understanding many practical problems ranging from disease patho...
The spatio-temporal distribution of subsurface microorganisms determines their efficiency in providi...
The spatio-temporal distribution of subsurface microorganisms determines their efficiency in providi...
Spatial distribution of soil microorganisms is relevant for the functioning and performance of many ...
Abstract: Bacteria can chemotactically migrate up attractant gradients by controlling run-and-tumble...
A differential equation describing the chemotactic migration of a bacterial population in a fixed ex...
Highlights • An individual-based model was developed and coupled to a pore-network model. • ...
In-situ bioremediation is limited by the inability to deliver the bacteria to the source of the chem...
Bacterial migration is important in understanding many practical problems ranging from disease patho...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering...
A mathematical model is developed to elucidate the effects of biophysical transport processes (nutri...
The Lattice Boltzmann method (LBM) has been widely used because it is well-suited to model flow and ...
Most bacteria at certain stages of their life cycle are able to move actively; they can swim in a li...
Most bacteria at certain stages of their life cycle are able to move actively; they can swim in a li...
Local chemical gradients can have a significant impact on bacterial population distributions within ...
Bacterial migration is important in understanding many practical problems ranging from disease patho...
The spatio-temporal distribution of subsurface microorganisms determines their efficiency in providi...
The spatio-temporal distribution of subsurface microorganisms determines their efficiency in providi...
Spatial distribution of soil microorganisms is relevant for the functioning and performance of many ...
Abstract: Bacteria can chemotactically migrate up attractant gradients by controlling run-and-tumble...
A differential equation describing the chemotactic migration of a bacterial population in a fixed ex...
Highlights • An individual-based model was developed and coupled to a pore-network model. • ...
In-situ bioremediation is limited by the inability to deliver the bacteria to the source of the chem...
Bacterial migration is important in understanding many practical problems ranging from disease patho...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Civil and Environmental Engineering...
A mathematical model is developed to elucidate the effects of biophysical transport processes (nutri...
The Lattice Boltzmann method (LBM) has been widely used because it is well-suited to model flow and ...
Most bacteria at certain stages of their life cycle are able to move actively; they can swim in a li...
Most bacteria at certain stages of their life cycle are able to move actively; they can swim in a li...