Cell growth experiments with a microfluidic device produce large scale time-lapse image data, which contain important information on cell growth and patterns in their genealogy. To extract such information, we propose a scheme to segment and track bacterial cells automatically. In contrast to most published approaches, which often split segmentation and tracking into two independent procedures, we focus on designing an algorithm that describes cell properties evolving between consecutive frames by feeding segmentation and tracking results from one frame to the next one. The cell boundaries are extracted by minimising the Distance Regularised Level Set Evolution model. Each individual cell was identified and tracked by identifying cell septu...
Our understanding of dynamic cellular processes has been greatly enhanced by rapid advances in quant...
Abstract We introduce a graphical model for the joint segmentation and tracking of E. coli cells fro...
Thesis (Ph.D.)--University of Washington, 2017-03Because of the stochastic nature and significant ce...
Cell growth experiments with a microfluidic device produce large scale time-lapse image data, which ...
Cell growth experiments with a microfluidic device produce large-scale time-lapse image data, which ...
Cell growth experiments with a microfluidic device produce large-scale time-lapse image data, which ...
Cell growth experiments with a microfluidic device produce large-scale time-lapse image data, which ...
Cell tracking enables data extraction from timelapse "cell movies" and promotes modeling biological ...
Cell tracking enables data extraction from timelapse "cell movies" and promotes modeling biological ...
Time-lapse imaging of cell colonies in microfluidic chambers provides time series of bioimages, i.e....
<div><p>Our understanding of dynamic cellular processes has been greatly enhanced by rapid advances ...
Microscopy image analysis is a major bottleneck in quantification of single-cell microscopy data, ty...
Our understanding of dynamic cellular processes has been greatly enhanced by rapid advances in quant...
This study has been developed a methodology for identifying accurately the boundaries of individual ...
This study has been developed a methodology for identifying accurately the boundaries of individual ...
Our understanding of dynamic cellular processes has been greatly enhanced by rapid advances in quant...
Abstract We introduce a graphical model for the joint segmentation and tracking of E. coli cells fro...
Thesis (Ph.D.)--University of Washington, 2017-03Because of the stochastic nature and significant ce...
Cell growth experiments with a microfluidic device produce large scale time-lapse image data, which ...
Cell growth experiments with a microfluidic device produce large-scale time-lapse image data, which ...
Cell growth experiments with a microfluidic device produce large-scale time-lapse image data, which ...
Cell growth experiments with a microfluidic device produce large-scale time-lapse image data, which ...
Cell tracking enables data extraction from timelapse "cell movies" and promotes modeling biological ...
Cell tracking enables data extraction from timelapse "cell movies" and promotes modeling biological ...
Time-lapse imaging of cell colonies in microfluidic chambers provides time series of bioimages, i.e....
<div><p>Our understanding of dynamic cellular processes has been greatly enhanced by rapid advances ...
Microscopy image analysis is a major bottleneck in quantification of single-cell microscopy data, ty...
Our understanding of dynamic cellular processes has been greatly enhanced by rapid advances in quant...
This study has been developed a methodology for identifying accurately the boundaries of individual ...
This study has been developed a methodology for identifying accurately the boundaries of individual ...
Our understanding of dynamic cellular processes has been greatly enhanced by rapid advances in quant...
Abstract We introduce a graphical model for the joint segmentation and tracking of E. coli cells fro...
Thesis (Ph.D.)--University of Washington, 2017-03Because of the stochastic nature and significant ce...