Single cells exhibit a diverse array of swimming strategies at low Reynolds number to search for nutrients, light, and other organisms. The fluid flows generated by their locomotion are important to understanding biomixing and interactions between cells in suspension..
The recent developments in using micro-organisms effectively for biofuels is the main motivation to ...
Fluid flow, ubiquitous in natural and man-made environments, has the potential to profoundly impact ...
What is flagellar swimming? Cilia and flagella are whip-like cell appendages that can exhibit regula...
Single cells exhibit a diverse array of swimming strategies at low Reynolds number to search for nut...
This article showcases a video contribution to the Physics of Fluids Gallery of Fluid Motion (the vi...
We present the first time-resolved measurements of the oscillatory velocity field induced by swimmin...
We present the first time-resolved measurements of the oscillatory velocity field induced by swimmin...
Biflagellated algae swim in mean directions that are governed by their environments. For example, ma...
The motility of microorganisms is influenced greatly by their hydrodynamic interactions with the flu...
We present quantitative measurements of time-dependent flagellar waveforms for freely swimming bifla...
In this fluid dynamics video, we demonstrate the microscale mixing enhancement of passive tracer par...
The economic and ecological importance of microorganisms and their fundamental functions in differen...
This document describes an experimental investigation of two different particle systems under condit...
MasterMicrobial cells are easily found in geometrically confined environments. The swimming characte...
Locomotion is widely observed in life at micrometric scales and is exhibited by many eukaryotic unic...
The recent developments in using micro-organisms effectively for biofuels is the main motivation to ...
Fluid flow, ubiquitous in natural and man-made environments, has the potential to profoundly impact ...
What is flagellar swimming? Cilia and flagella are whip-like cell appendages that can exhibit regula...
Single cells exhibit a diverse array of swimming strategies at low Reynolds number to search for nut...
This article showcases a video contribution to the Physics of Fluids Gallery of Fluid Motion (the vi...
We present the first time-resolved measurements of the oscillatory velocity field induced by swimmin...
We present the first time-resolved measurements of the oscillatory velocity field induced by swimmin...
Biflagellated algae swim in mean directions that are governed by their environments. For example, ma...
The motility of microorganisms is influenced greatly by their hydrodynamic interactions with the flu...
We present quantitative measurements of time-dependent flagellar waveforms for freely swimming bifla...
In this fluid dynamics video, we demonstrate the microscale mixing enhancement of passive tracer par...
The economic and ecological importance of microorganisms and their fundamental functions in differen...
This document describes an experimental investigation of two different particle systems under condit...
MasterMicrobial cells are easily found in geometrically confined environments. The swimming characte...
Locomotion is widely observed in life at micrometric scales and is exhibited by many eukaryotic unic...
The recent developments in using micro-organisms effectively for biofuels is the main motivation to ...
Fluid flow, ubiquitous in natural and man-made environments, has the potential to profoundly impact ...
What is flagellar swimming? Cilia and flagella are whip-like cell appendages that can exhibit regula...