Swimming speeds and flagellar rotation rates of individual free-swimming Vibrio alginolyticus cells were measured simultaneously by laser dark-field microscopy at 25, 30, and 35 degrees C. A roughly linear relation between swimming speed and flagellar rotation rate was observed. The ratio of swimming speed to flagellar rotation rate was 0.113 microns, which indicated that a cell progressed by 7% of pitch of flagellar helix during one flagellar rotation. At each temperature, however, swimming speed had a tendency to saturate at high flagellar rotation rate. That is, the cell with a faster-rotating flagellum did not always swim faster. To analyze the bacterial motion, we proposed a model in which the torque characteristics of the flagellar mo...
We use in vivo measurements of swimming bacteria in an optical trap to determine fundamental propert...
This thesis investigates bacterial motility from the mechanism permitting individual selfpropulsion ...
A two-lobe response function is considered as a manifestation of temporal signal comparison in bacte...
Swimming speeds and flagellar rotation rates of individual free-swimming Vibrio alginolyticus cells ...
Many bacteria swim in aqueous environments, propelled by rotating their flagella. The shape of the f...
A bacterial ftagellum is driven by a reversible rotary motor. The power input is determined by proto...
Although the motility of the flagellated bacteria, Escherichia coli, has been widely studied, the ef...
Bacterial flagella are driven by a rotary motor that is energized by an electrochemical ion gradient...
AbstractWe determined the torque of the flagellar motor of Caulobacter crescentus for different moto...
The torque–speed relationship of the Naþ-driven flagellar motor of Vibrio alginolyticus was investig...
The purpose of this work was to study the changes in rotation rate of the bacterial motor and to try...
The swimming motion of a microorganism with a single flagellum is investigated for both helical and ...
Bacterial swimming and chemotaxis serves as a model system for understanding information processing ...
AbstractThe bacterial flagellar motor is a molecular machine that converts an ion flux to the rotati...
Two light-scattering techniques are used to study the temperature dependence of translational and ro...
We use in vivo measurements of swimming bacteria in an optical trap to determine fundamental propert...
This thesis investigates bacterial motility from the mechanism permitting individual selfpropulsion ...
A two-lobe response function is considered as a manifestation of temporal signal comparison in bacte...
Swimming speeds and flagellar rotation rates of individual free-swimming Vibrio alginolyticus cells ...
Many bacteria swim in aqueous environments, propelled by rotating their flagella. The shape of the f...
A bacterial ftagellum is driven by a reversible rotary motor. The power input is determined by proto...
Although the motility of the flagellated bacteria, Escherichia coli, has been widely studied, the ef...
Bacterial flagella are driven by a rotary motor that is energized by an electrochemical ion gradient...
AbstractWe determined the torque of the flagellar motor of Caulobacter crescentus for different moto...
The torque–speed relationship of the Naþ-driven flagellar motor of Vibrio alginolyticus was investig...
The purpose of this work was to study the changes in rotation rate of the bacterial motor and to try...
The swimming motion of a microorganism with a single flagellum is investigated for both helical and ...
Bacterial swimming and chemotaxis serves as a model system for understanding information processing ...
AbstractThe bacterial flagellar motor is a molecular machine that converts an ion flux to the rotati...
Two light-scattering techniques are used to study the temperature dependence of translational and ro...
We use in vivo measurements of swimming bacteria in an optical trap to determine fundamental propert...
This thesis investigates bacterial motility from the mechanism permitting individual selfpropulsion ...
A two-lobe response function is considered as a manifestation of temporal signal comparison in bacte...