Microbial organisms are easily observed in geometrically confined environments. The swimming characteristics of these microorganisms are largely influenced by the presence of a solid surface. Their swimming behavior in the near-wall region shows different physical motilities. In this study, digital in-line holographic particle tracking velocimetry technique is used to investigate the three-dimensional (3D) motile characteristics of Prorocentrum minimum, especially in the near-wall region. The effects of the interaction between the microorganism and a solid wall on the 3D swimming characteristics, such as helix parameters, orientation, and attraction to the wall, are experimentally analyzed. As a result, swimming microorganisms are observed ...
A general Boundary Element Method is presented and benchmarked with existing Slender Body Theory res...
The swimming patterns of zoospores of the green alga Ulva linza in the vicinity of a surface were in...
The inuence of nearby solid surfaces on the motility of bacteria is of fundamental importance as the...
MasterMicrobial cells are easily found in geometrically confined environments. The swimming characte...
MasterA digital holographic microscopy was employed to measure the 3D motion of free-swimming microo...
Department of Biomedical EngineeringIn nature environment, bacterial swimming motility is important ...
Flagellar locomotion is one of the first forms of locomotion on our planet. Microorganisms use their...
The near-surface motility of bacteria is important in the initial formation of biofilms and in many ...
Bacteria sense chemicals, surfaces, and other cells and move toward some and away from others. Study...
Holographic 3D tracking was applied to record and analyze the swimming behavior of \(\textit {Pseudo...
The natural habitat of many bacterial swimmers is dominated by interfaces and narrow interstitial sp...
Holographic 3D tracking was applied to record and analyze the swimming behavior of Pseudomonas aerug...
A new three-dimensional (3D)-tracking system with optimized dark-field illumination is presented. It...
The motility of bacteria plays an important role in their reproduction, energy balance, and predator...
We present an apparatus optimized for tracking swimming micro-organisms in the size range of 10-1000...
A general Boundary Element Method is presented and benchmarked with existing Slender Body Theory res...
The swimming patterns of zoospores of the green alga Ulva linza in the vicinity of a surface were in...
The inuence of nearby solid surfaces on the motility of bacteria is of fundamental importance as the...
MasterMicrobial cells are easily found in geometrically confined environments. The swimming characte...
MasterA digital holographic microscopy was employed to measure the 3D motion of free-swimming microo...
Department of Biomedical EngineeringIn nature environment, bacterial swimming motility is important ...
Flagellar locomotion is one of the first forms of locomotion on our planet. Microorganisms use their...
The near-surface motility of bacteria is important in the initial formation of biofilms and in many ...
Bacteria sense chemicals, surfaces, and other cells and move toward some and away from others. Study...
Holographic 3D tracking was applied to record and analyze the swimming behavior of \(\textit {Pseudo...
The natural habitat of many bacterial swimmers is dominated by interfaces and narrow interstitial sp...
Holographic 3D tracking was applied to record and analyze the swimming behavior of Pseudomonas aerug...
A new three-dimensional (3D)-tracking system with optimized dark-field illumination is presented. It...
The motility of bacteria plays an important role in their reproduction, energy balance, and predator...
We present an apparatus optimized for tracking swimming micro-organisms in the size range of 10-1000...
A general Boundary Element Method is presented and benchmarked with existing Slender Body Theory res...
The swimming patterns of zoospores of the green alga Ulva linza in the vicinity of a surface were in...
The inuence of nearby solid surfaces on the motility of bacteria is of fundamental importance as the...