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Understanding the mechanisms that control critical biological events of neural cell populations, such as proliferation, differentiation, or cell fate decisions, will be crucial to design therapeutic strategies for many diseases affecting the nervous system. Current methods to track cell populations rely on their final outcomes in still images and they generally fail to provide sufficient temporal resolution to identify behavioral features in single cells. Moreover, variations in cell death, behavioral heterogeneity within a cell population, dilution, spreading, or the low efficiency of the markers used to analyze cells are all important handicaps that will lead to incomplete or incorrect read-outs of the results. Conversely, performing live imaging and single cell tracking under appropriate conditions represents a powerful tool to monitor each of these events. Here, a time-lapse video-microscopy protocol, followed by post-processing, is described to track neural populations with single cell resolution, employing specific software. The methods described enable researchers to address essential questions regarding the cell biology and lineage progression of distinct neural populations.
Journal of Visualized Experiments. JoVE, 2017 (130)
ISSN:1940-087X
570, Cytological Techniques, Adult neural stem cell | Issue 130 | Lineage progression | Lineage tree | Live imaging | Neural cells | Neuroscience | Single cell tracking | Timelapse video-microscopy, 610, Neuroscience ; Issue 130 ; Live Imaging ; Single Cell Tracking ; Lineage Progression ; Adult Neural Stem Cell ; Neural Cells ; Lineage Tree ; Time-lapse Video-microscopy, adult neural stem cell, Single cell tracking, Animals, Humans, Cell Lineage, Monitoring, Physiologic, Live imaging, Neurons, Microscopy, Video, Neuroscience; Issue 130; Live imaging; Single cell tracking; lineage progression; adult neural stem cell; neural cells; lineage tree; time-lapse video-microscopy, lineage progression, neural cells, Cell Differentiation, Cell Biology, single cell tracking, Issue 130, time-lapse video-microscopy, timelapse video-microscopy, Cell Tracking, lineage tree, Single-Cell Analysis, Neuroscience
570, Cytological Techniques, Adult neural stem cell | Issue 130 | Lineage progression | Lineage tree | Live imaging | Neural cells | Neuroscience | Single cell tracking | Timelapse video-microscopy, 610, Neuroscience ; Issue 130 ; Live Imaging ; Single Cell Tracking ; Lineage Progression ; Adult Neural Stem Cell ; Neural Cells ; Lineage Tree ; Time-lapse Video-microscopy, adult neural stem cell, Single cell tracking, Animals, Humans, Cell Lineage, Monitoring, Physiologic, Live imaging, Neurons, Microscopy, Video, Neuroscience; Issue 130; Live imaging; Single cell tracking; lineage progression; adult neural stem cell; neural cells; lineage tree; time-lapse video-microscopy, lineage progression, neural cells, Cell Differentiation, Cell Biology, single cell tracking, Issue 130, time-lapse video-microscopy, timelapse video-microscopy, Cell Tracking, lineage tree, Single-Cell Analysis, Neuroscience
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