The use of micropatterns has transformed investigations of dynamic biological processes by enabling the reproducible analysis of live cells using time-lapse fluorescence microscopy. With micropatterns, thousands of individual cells can be efficiently imaged in parallel, rendering the approach well suited for screening projects. Despite being powerful, such screens remain challenging in terms of data handling and analysis. Typically, only a fraction of micropatterns is occupied in a manner suitable to monitor a given phenotypic output. Moreover, the presence of dying or otherwise compromised cells complicates the analysis. Therefore, focusing strictly on relevant cells in such large time-lapse microscopy dataset poses interesting analysis ch...
doi:10.3791/1878 (2010). Changes in cellular organization and chromosome dynamics that occur during ...
The extraction of fluorescence time course data is a major bottleneck in high-throughput live-cell m...
Background: Automated time-lapse microscopy can visualize proliferation of large numbers of individu...
The use of micropatterns has transformed investigations of dynamic biological processes by enabling ...
<div><p>The use of micropatterns has transformed investigations of dynamic biological processes by e...
In the field of cell biology, there is an increasing use of time-lapse data to understand cellular f...
In this paper we propose a workflow to detect and track mitotic cells in time-lapse microscopy image...
Time-lapse live cell imaging has been increasingly employed by biological and biomedical researchers...
Dataset for Figures 3D, 4A, 4B and 4C of the manuscript TRACMIT: an effective pipeline for tracking...
The extraction of fluorescence time course data is a major bottleneck in high-throughput live-cell m...
Modern technology has enabled monitoring of large populations of live cells over extended time perio...
Automated visual-tracking systems of stem cell populations in vitro allow for high-throughput analys...
Automated time-lapse microscopy can visualize proliferation of large numbers of individual cells, en...
The genetic integrity of every organism depends on the faithful partitioning of its genome between t...
Automated time-lapse microscopy can visualize proliferation of large numbers of individual cells, en...
doi:10.3791/1878 (2010). Changes in cellular organization and chromosome dynamics that occur during ...
The extraction of fluorescence time course data is a major bottleneck in high-throughput live-cell m...
Background: Automated time-lapse microscopy can visualize proliferation of large numbers of individu...
The use of micropatterns has transformed investigations of dynamic biological processes by enabling ...
<div><p>The use of micropatterns has transformed investigations of dynamic biological processes by e...
In the field of cell biology, there is an increasing use of time-lapse data to understand cellular f...
In this paper we propose a workflow to detect and track mitotic cells in time-lapse microscopy image...
Time-lapse live cell imaging has been increasingly employed by biological and biomedical researchers...
Dataset for Figures 3D, 4A, 4B and 4C of the manuscript TRACMIT: an effective pipeline for tracking...
The extraction of fluorescence time course data is a major bottleneck in high-throughput live-cell m...
Modern technology has enabled monitoring of large populations of live cells over extended time perio...
Automated visual-tracking systems of stem cell populations in vitro allow for high-throughput analys...
Automated time-lapse microscopy can visualize proliferation of large numbers of individual cells, en...
The genetic integrity of every organism depends on the faithful partitioning of its genome between t...
Automated time-lapse microscopy can visualize proliferation of large numbers of individual cells, en...
doi:10.3791/1878 (2010). Changes in cellular organization and chromosome dynamics that occur during ...
The extraction of fluorescence time course data is a major bottleneck in high-throughput live-cell m...
Background: Automated time-lapse microscopy can visualize proliferation of large numbers of individu...