<p>Video-microscopic acquisitions were made 30 min PI, and 100 ST were tracked in each condition. In panel A are presented the statistical comparison between the average speeds of ST alone versus the average speeds of ST maintain in the presence of <i>S. b</i>-B or beads. In panel B are presented the quantification of different type of tracks: LT, CT or RT. The percentages marked in each column correspond to: the number of specific track type/the total number of track for each condition ×100. The data derived from a sequence using MTrack J processing software.</p
<p>Shapes of the frequency responses were quite similar at all three points on the manubrium while t...
<p>(Left) Experimental velocities against simulated velocities in the 195 measured microbeads. The r...
(A) Example trajectory showing tumbling events. The bottom trajectory is from a non-swimming cell. S...
<p>Scatter plots for microsaccade magnitude (<b>A</b>), displacement (<b>B</b>), overshoot size (<b>...
<p>(Left) A selection of tracks that were manually verified to contain stopping phases correctly ide...
<p>(A) Snapshots of cells moving outside the microchannels on a planar open surface. (B) Persistent ...
<p>In panel A and B are presented the swimming trajectories of strain M913 incubated alone with T84 ...
Mobility quantification of single cells and cellular processes in dense cultures is a challenge, bec...
Mobility quantification of single cells and cellular processes in dense cultures is a challenge, bec...
Mobility quantification of single cells and cellular processes in dense cultures is a challenge, bec...
Mobility quantification of single cells and cellular processes in dense cultures is a challenge, bec...
<p>a) Probability density function for the angular change of direction between consecutive steps. b)...
AbstractIn vitro, single-molecule motility assays allow for the direct characterization of molecular...
<p>(A and B) Infection of HT-29 cells with CFP-expressing wild type and Δ<i>mxiG/pmxiG</i> (Ara with...
<p>a) Plot of instantaneous speed vs. time for a typical trajectory. The times at which persistent-m...
<p>Shapes of the frequency responses were quite similar at all three points on the manubrium while t...
<p>(Left) Experimental velocities against simulated velocities in the 195 measured microbeads. The r...
(A) Example trajectory showing tumbling events. The bottom trajectory is from a non-swimming cell. S...
<p>Scatter plots for microsaccade magnitude (<b>A</b>), displacement (<b>B</b>), overshoot size (<b>...
<p>(Left) A selection of tracks that were manually verified to contain stopping phases correctly ide...
<p>(A) Snapshots of cells moving outside the microchannels on a planar open surface. (B) Persistent ...
<p>In panel A and B are presented the swimming trajectories of strain M913 incubated alone with T84 ...
Mobility quantification of single cells and cellular processes in dense cultures is a challenge, bec...
Mobility quantification of single cells and cellular processes in dense cultures is a challenge, bec...
Mobility quantification of single cells and cellular processes in dense cultures is a challenge, bec...
Mobility quantification of single cells and cellular processes in dense cultures is a challenge, bec...
<p>a) Probability density function for the angular change of direction between consecutive steps. b)...
AbstractIn vitro, single-molecule motility assays allow for the direct characterization of molecular...
<p>(A and B) Infection of HT-29 cells with CFP-expressing wild type and Δ<i>mxiG/pmxiG</i> (Ara with...
<p>a) Plot of instantaneous speed vs. time for a typical trajectory. The times at which persistent-m...
<p>Shapes of the frequency responses were quite similar at all three points on the manubrium while t...
<p>(Left) Experimental velocities against simulated velocities in the 195 measured microbeads. The r...
(A) Example trajectory showing tumbling events. The bottom trajectory is from a non-swimming cell. S...