Live cell time-lapse microscopy, a widely-used technique to study gene expression and protein dynamics in single cells, relies on segmentation and tracking of individual cells for data generation. The potential of the data that can be extracted from this technique is limited by the inability to accurately segment a large number of cells from such microscopy images and track them over long periods of time. Existing segmentation and tracking algorithms either require additional dyes or markers specific to segmentation or they are highly specific to one imaging condition and cell morphology and/or necessitate manual correction. Here we introduce a fully automated, fast and robust segmentation and tracking algorithm for budding yeast that overc...
International audienceWith the continuous expansion of single cell biology, the observation of the b...
Robust image analysis is an important aspect of all cell biology studies. The geometrics of cells ar...
Quantification of protein abundance and subcellular localization dynamics from fluorescence microsco...
Live cell time-lapse microscopy, a widely-used technique to study gene expression and protein dynami...
Our understanding of dynamic cellular processes has been greatly enhanced by rapid advances in quant...
<div><p>Our understanding of dynamic cellular processes has been greatly enhanced by rapid advances ...
Our understanding of dynamic cellular processes has been greatly enhanced by rapid advances in quant...
The identification of cell borders ('segmentation') in microscopy images constitutes a bottleneck fo...
Time lapse microscopy images are an important support in quantitative biology. Gene circuit dynamics...
Time lapse microscopy images are an important support in quantitative biology. Gene circuit dynamics...
Time lapse microscopy images are an important support in quantitative biology. Gene circuit dynamics...
Motivation: Single-cell time-lapse microscopy is a ubiquitous tool for studying the dynamics of comp...
Motivation: Single-cell time-lapse microscopy is a ubiquitous tool for studying the dynamics of comp...
Time lapse microscopy images are an important support in quantitative biology. Gene circuit dynamics...
International audienceWith the continuous expansion of single cell biology, the observation of the b...
International audienceWith the continuous expansion of single cell biology, the observation of the b...
Robust image analysis is an important aspect of all cell biology studies. The geometrics of cells ar...
Quantification of protein abundance and subcellular localization dynamics from fluorescence microsco...
Live cell time-lapse microscopy, a widely-used technique to study gene expression and protein dynami...
Our understanding of dynamic cellular processes has been greatly enhanced by rapid advances in quant...
<div><p>Our understanding of dynamic cellular processes has been greatly enhanced by rapid advances ...
Our understanding of dynamic cellular processes has been greatly enhanced by rapid advances in quant...
The identification of cell borders ('segmentation') in microscopy images constitutes a bottleneck fo...
Time lapse microscopy images are an important support in quantitative biology. Gene circuit dynamics...
Time lapse microscopy images are an important support in quantitative biology. Gene circuit dynamics...
Time lapse microscopy images are an important support in quantitative biology. Gene circuit dynamics...
Motivation: Single-cell time-lapse microscopy is a ubiquitous tool for studying the dynamics of comp...
Motivation: Single-cell time-lapse microscopy is a ubiquitous tool for studying the dynamics of comp...
Time lapse microscopy images are an important support in quantitative biology. Gene circuit dynamics...
International audienceWith the continuous expansion of single cell biology, the observation of the b...
International audienceWith the continuous expansion of single cell biology, the observation of the b...
Robust image analysis is an important aspect of all cell biology studies. The geometrics of cells ar...
Quantification of protein abundance and subcellular localization dynamics from fluorescence microsco...