We apply a particle tracking technique to track the motion of individual pathogenic Leptospira. We observe and capture images of motile Leptospira by means of CCD and darkfield microscope. Image processing, statistical theories and simulations are used for data analysis. Based on trajectory patterns, mean square displacement, and power spectral density characteristics, we found that the motion modes are most likely to be directed motion mode (70%) and the rest are either normal diffusion or unidentified mode. Our findings may support the fact that why leptospires are very well efficient toward targeting internal tissues as a result of increase in virulence factor
Cellular motility is an ancient eukaryotic trait, ubiquitous across phyla with roles in predator avo...
Pathogenic spirochetes are bacteria that cause a number of emerging and re-emerging diseases worldwi...
We present a quantitative 3D analysis of the motility of the blood parasite Trypanosoma brucei. Digi...
Bacterial motility is crucial for many pathogenic species in the process of invasion and/or dissemin...
Bacterial motility is crucial for many pathogenic species in the process of invasion and/or dissemin...
Bacterial motility is crucial for many pathogenic species in the process of invasion and/or dissemin...
Bacterial motility is crucial for many pathogenic species in the process of invasion and/or dissemin...
International audienceDynamic processes such as pathogens invasion strategies and immune response to...
Leptospira (L.) interrogans are bacteria responsible for a worldwide reemerging zoonosis. Some anima...
AbstractLeptospira are spirochete bacteria distinguished by a short-pitch coiled body and intracellu...
Pathogenic spirochetes of the genus Leptospira are a major cause of human zoonotic infectious diseas...
The invasive stages of malaria and other apicomplexan parasites use a unique motility machinery base...
Imaging at high resolution and subsequent image analysis with modified mobile phones have the potent...
Leptospira interrogans is the primary causative agent of the most widespread zoonotic disease, lepto...
A: Leptospires in THP-1 and HUVEC under the transmission electron microscope after infection with L....
Cellular motility is an ancient eukaryotic trait, ubiquitous across phyla with roles in predator avo...
Pathogenic spirochetes are bacteria that cause a number of emerging and re-emerging diseases worldwi...
We present a quantitative 3D analysis of the motility of the blood parasite Trypanosoma brucei. Digi...
Bacterial motility is crucial for many pathogenic species in the process of invasion and/or dissemin...
Bacterial motility is crucial for many pathogenic species in the process of invasion and/or dissemin...
Bacterial motility is crucial for many pathogenic species in the process of invasion and/or dissemin...
Bacterial motility is crucial for many pathogenic species in the process of invasion and/or dissemin...
International audienceDynamic processes such as pathogens invasion strategies and immune response to...
Leptospira (L.) interrogans are bacteria responsible for a worldwide reemerging zoonosis. Some anima...
AbstractLeptospira are spirochete bacteria distinguished by a short-pitch coiled body and intracellu...
Pathogenic spirochetes of the genus Leptospira are a major cause of human zoonotic infectious diseas...
The invasive stages of malaria and other apicomplexan parasites use a unique motility machinery base...
Imaging at high resolution and subsequent image analysis with modified mobile phones have the potent...
Leptospira interrogans is the primary causative agent of the most widespread zoonotic disease, lepto...
A: Leptospires in THP-1 and HUVEC under the transmission electron microscope after infection with L....
Cellular motility is an ancient eukaryotic trait, ubiquitous across phyla with roles in predator avo...
Pathogenic spirochetes are bacteria that cause a number of emerging and re-emerging diseases worldwi...
We present a quantitative 3D analysis of the motility of the blood parasite Trypanosoma brucei. Digi...