Hattab G. Analyzing colony dynamics and visualizing cell diversity in spatiotemporal experiments. Bielefeld: Universität Bielefeld; 2018.Bioimaging technologies enable the description of the life cycle of organisms at the microscopic scale, for example bacterial cells. In the particular case of time lapse imaging, the coupling of experimental setups and marker protocols results in the acquisition of biological changes in spatiotemporal experiments. Such experiments are devised to obtain a time-lapse image data, which I refer to as biomovies. Understanding how a cell behaves at every time point is crucial. In fact, this motivated all cell studies in the literature, which are single cell oriented. For the present biomovies, the task is to ide...
Cells need to be able to adapt quickly to changes in nutrient availability in their environment in o...
Thesis (Ph.D.)--University of Washington, 2017-03Because of the stochastic nature and significant ce...
Populations of genetically identical bacteria are phenotypically heterogeneous, giving rise to popul...
Hattab G, Wiesmann V, Becker A, Munzner T, Nattkemper TW. A Novel methodology for characterizing cel...
Time-lapse imaging of cell colonies in microfluidic chambers provides time series of bioimages, i.e....
<p>Time-lapse imaging of cell colonies in microfluidic chambers provides time series of bioimages, i...
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 ...
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 ...
Quantitative single-cell time-lapse microscopy is a powerful method for analyzing gene circuit dynam...
Quantitative single-cell time-lapse microscopy is a powerful method for analyzing gene circuit dynam...
Conventional bacterial growth studies rely on large bacterial populations without considering the in...
Conventional bacterial growth studies rely on large bacterial populations without considering the in...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
Cells need to be able to adapt quickly to changes in nutrient availability in their environment in o...
Thesis (Ph.D.)--University of Washington, 2017-03Because of the stochastic nature and significant ce...
Populations of genetically identical bacteria are phenotypically heterogeneous, giving rise to popul...
Hattab G, Wiesmann V, Becker A, Munzner T, Nattkemper TW. A Novel methodology for characterizing cel...
Time-lapse imaging of cell colonies in microfluidic chambers provides time series of bioimages, i.e....
<p>Time-lapse imaging of cell colonies in microfluidic chambers provides time series of bioimages, i...
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 ...
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 ...
Quantitative single-cell time-lapse microscopy is a powerful method for analyzing gene circuit dynam...
Quantitative single-cell time-lapse microscopy is a powerful method for analyzing gene circuit dynam...
Conventional bacterial growth studies rely on large bacterial populations without considering the in...
Conventional bacterial growth studies rely on large bacterial populations without considering the in...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Computer S...
Cells need to be able to adapt quickly to changes in nutrient availability in their environment in o...
Thesis (Ph.D.)--University of Washington, 2017-03Because of the stochastic nature and significant ce...
Populations of genetically identical bacteria are phenotypically heterogeneous, giving rise to popul...