Abstract We present a method for automated nucleus identification and tracking in time-lapse microscopy recordings of entire developing embryos. Our method combines deep learning and global optimization to enable complete lineage reconstruction from sparse point annotations, and uses parallelization to process multi-terabyte light-sheet recordings, which we demonstrate on three common model organisms: mouse, zebrafish, Drosophila . On the most difficult dataset (mouse), our method correctly reconstructs 75.8% of cell lineages spanning 1 hour, compared to 31.8% for the previous state of the art, thus enabling biologists to determine where and when cell fate decisions are made in developing embryos, tissues, and organs
SummaryWe present the Real-time Accurate Cell-shape Extractor (RACE), a high-throughput image analys...
International audienceThe quantitative and systematic analysis of embryonic cell dynamics from in vi...
International audienceThe paper presents numerical algorithms, post processing and validation steps ...
Abstract We present a method for automated nucleus identification and tracking in time-lapse microsc...
We present a method for automated nucleus identification and tracking in time-lapse microscopy recor...
The comprehensive reconstruction of cell lineages in complex multicellular organisms is a central go...
Live-cell imaging experiments have opened an exciting window into the behavior of living systems. Wh...
This thesis focuses on automated monitoring of human embryonic cells in time-lapse microscopy images...
Understanding the development of complex multicellular organisms as a function of the underlying cel...
State-of-the-art light-sheet and confocal microscopes allow recording of entire embryos in 3D and ov...
International audienceThe paper presents numerical algorithms, postprocessing and validation steps f...
We present DELTR, an automated pipeline for the analysis of time-resolved light sheet fluorescence m...
International audienceA complete understanding of early morphogenetic processes has been an elusive ...
International audienceThe recent availability of complete cell lineages from live imaging data opens...
Cell lineage decisions occur in three-dimensional spatial patterns that are difficult to identify by...
SummaryWe present the Real-time Accurate Cell-shape Extractor (RACE), a high-throughput image analys...
International audienceThe quantitative and systematic analysis of embryonic cell dynamics from in vi...
International audienceThe paper presents numerical algorithms, post processing and validation steps ...
Abstract We present a method for automated nucleus identification and tracking in time-lapse microsc...
We present a method for automated nucleus identification and tracking in time-lapse microscopy recor...
The comprehensive reconstruction of cell lineages in complex multicellular organisms is a central go...
Live-cell imaging experiments have opened an exciting window into the behavior of living systems. Wh...
This thesis focuses on automated monitoring of human embryonic cells in time-lapse microscopy images...
Understanding the development of complex multicellular organisms as a function of the underlying cel...
State-of-the-art light-sheet and confocal microscopes allow recording of entire embryos in 3D and ov...
International audienceThe paper presents numerical algorithms, postprocessing and validation steps f...
We present DELTR, an automated pipeline for the analysis of time-resolved light sheet fluorescence m...
International audienceA complete understanding of early morphogenetic processes has been an elusive ...
International audienceThe recent availability of complete cell lineages from live imaging data opens...
Cell lineage decisions occur in three-dimensional spatial patterns that are difficult to identify by...
SummaryWe present the Real-time Accurate Cell-shape Extractor (RACE), a high-throughput image analys...
International audienceThe quantitative and systematic analysis of embryonic cell dynamics from in vi...
International audienceThe paper presents numerical algorithms, post processing and validation steps ...