Background: The dynamic growing and shortening behaviors of microtubules are central to the fundamental roles played by microtubules in essentially all eukaryotic cells. Traditionally, microtubule behavior is quantified by manually tracking individual microtubules in time-lapse images under various experimental conditions. Manual analysis is laborious, approximate, and often offers limited analytical capability in extracting potentially valuable information from the data. Results: In this work, we present computer vision and machine-learning based methods for extracting novel dynamics information from time-lapse images. Using actual microtubule data, we estimate statistical models of microtubule behavior that are highly effective in identi...
Abstract Background Innumerable biological investigations require comparing collections of molecules...
Studying intracellular dynamics is of fundamental importance for understanding healthy life at the m...
Microtubules are polar, dynamic filaments fundamental to many cellular processes. In vitro reconstit...
The method of microtubule tracking and dynamics analysis, presented here, improves upon the current ...
Regulation of microtubule dynamics is essential for many cell biological processes and is likely to ...
Regulation of microtubule dynamics is essential for many cell biological processes, and is likely to...
Microtubule (MT) dynamics are traditionally analyzed from time lapse images by manual techniques tha...
Microtubules are polar, dynamic filaments fundamental to many cellular processes. In vitro reconstit...
Microtubule (MT) dynamics are traditionally analyzed from time lapse images by manual techniques tha...
Intracellular microtubule polymerization dynamics are spatiotemporally controlled by numerous microt...
The dynamics of the microtubule assembly are very signifi-cant both for cell function and structure....
Investigating spatial and temporal control of microtubule dynamics in live cells is critical to unde...
Investigating spatial and temporal control of microtubule dynamics in live cells is critical to unde...
Abstract—Studying intracellular dynamics is of fundamental importance for understanding healthy life...
The microtubule network plays critical roles in many cellular processes, and quantitative models of ...
Abstract Background Innumerable biological investigations require comparing collections of molecules...
Studying intracellular dynamics is of fundamental importance for understanding healthy life at the m...
Microtubules are polar, dynamic filaments fundamental to many cellular processes. In vitro reconstit...
The method of microtubule tracking and dynamics analysis, presented here, improves upon the current ...
Regulation of microtubule dynamics is essential for many cell biological processes and is likely to ...
Regulation of microtubule dynamics is essential for many cell biological processes, and is likely to...
Microtubule (MT) dynamics are traditionally analyzed from time lapse images by manual techniques tha...
Microtubules are polar, dynamic filaments fundamental to many cellular processes. In vitro reconstit...
Microtubule (MT) dynamics are traditionally analyzed from time lapse images by manual techniques tha...
Intracellular microtubule polymerization dynamics are spatiotemporally controlled by numerous microt...
The dynamics of the microtubule assembly are very signifi-cant both for cell function and structure....
Investigating spatial and temporal control of microtubule dynamics in live cells is critical to unde...
Investigating spatial and temporal control of microtubule dynamics in live cells is critical to unde...
Abstract—Studying intracellular dynamics is of fundamental importance for understanding healthy life...
The microtubule network plays critical roles in many cellular processes, and quantitative models of ...
Abstract Background Innumerable biological investigations require comparing collections of molecules...
Studying intracellular dynamics is of fundamental importance for understanding healthy life at the m...
Microtubules are polar, dynamic filaments fundamental to many cellular processes. In vitro reconstit...