It has been shown that a nanoliter chamber separated by a wall of asymmetric obstacles can lead to an inhomogeneous distribution of self-propelled microorganisms. Although it is well established that this rectification effect arises from the interaction between the swimmers and the noncentrosymmetric pillars, here we demonstrate numerically that its efficiency is strongly dependent on the detailed dynamics of the individual microorganism. In particular, for the case of run-and-tumble dynamics, the distribution of run lengths, the rotational diffusion, and the partial preservation of run orientation memory through a tumble are important factors when computing the rectification efficiency. In addition, we optimize the geometrical dimensions o...
The present work contains original research on the field of biophysics, specifically the study of sw...
This dissertation contains original research on a range of problems involving the locomotion of diff...
E. coli does chemotaxis by performing a biased random walk composed of alternating periods of swimmi...
It has been shown that a nanoliter chamber separated by a wall of asymmetric obstacles can lead to a...
Suitable asymmetric microstructures can be used to control the direction of motion in microorganism ...
Many theoretical studies of bacterial locomotion adopt a simple model for the organism consisting of...
Living organisms often display adaptive strategies that allow them to move efficiently even in stron...
AbstractWe present a computational fluid dynamics (CFD) model for the swimming of micro organisms wi...
Swimming cells and microorganisms must often move through complex fluids that contain an immersed mi...
The natural habitat of many bacterial swimmers is dominated by interfaces and narrow interstitial sp...
We analyzed the effect of confinement on the effective diffusion of a run-and-tumble E. coli-like fl...
We analyzed the effect of confinement on the effective diffusion of a run-and-tumble E. coli-like fl...
The ability to rapidly detect and track nutrient gradients is key to the ecological success of motil...
Suspensions of unicellular microswimmers such as flagellated bacteria or motile algae can exhibit sp...
In nature as well as in the context of infection and medical applications, bacteria often have to mo...
The present work contains original research on the field of biophysics, specifically the study of sw...
This dissertation contains original research on a range of problems involving the locomotion of diff...
E. coli does chemotaxis by performing a biased random walk composed of alternating periods of swimmi...
It has been shown that a nanoliter chamber separated by a wall of asymmetric obstacles can lead to a...
Suitable asymmetric microstructures can be used to control the direction of motion in microorganism ...
Many theoretical studies of bacterial locomotion adopt a simple model for the organism consisting of...
Living organisms often display adaptive strategies that allow them to move efficiently even in stron...
AbstractWe present a computational fluid dynamics (CFD) model for the swimming of micro organisms wi...
Swimming cells and microorganisms must often move through complex fluids that contain an immersed mi...
The natural habitat of many bacterial swimmers is dominated by interfaces and narrow interstitial sp...
We analyzed the effect of confinement on the effective diffusion of a run-and-tumble E. coli-like fl...
We analyzed the effect of confinement on the effective diffusion of a run-and-tumble E. coli-like fl...
The ability to rapidly detect and track nutrient gradients is key to the ecological success of motil...
Suspensions of unicellular microswimmers such as flagellated bacteria or motile algae can exhibit sp...
In nature as well as in the context of infection and medical applications, bacteria often have to mo...
The present work contains original research on the field of biophysics, specifically the study of sw...
This dissertation contains original research on a range of problems involving the locomotion of diff...
E. coli does chemotaxis by performing a biased random walk composed of alternating periods of swimmi...