Time-lapse Confocal Microscopy

Time-lapse confocal microscopy is an imaging technique that captures fluorescent, optically sectioned images of biological specimens at successive time points, allowing researchers to observe cellular structures and processes as they change. A focused laser scans the specimen, while a pinhole rejects out-of-focus light; repeated image acquisition then produces a time-resolved sequence that can be analyzed as a movie or quantitative dataset. In biology, this approach reveals cell division, organelle movement, intracellular trafficking, tissue development, and interactions between living cells. Careful control of imaging intervals, light exposure, and environmental conditions helps preserve specimen health while producing reliable measurements of dynamic events.

Time-lapse Confocal Microscopy - Related Videos

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JoVE EoE - Neuroimaging

Time-Lapse Imaging of Mouse Neural Stem Cell Division Using Confocal Microscopy

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2025

Source: Daynac, M., et. al. Cell Sorting of Neural Stem and Progenitor Cells from the Adult Mouse Subventricular Zone and Live-imaging of their Cell Cycle Dynamics. J. Vis. Exp. (2015)This video demonstrates time-lapse imaging of neural stem cells (NSCs) from a transgenic mouse brain using a confocal laser scanning microscope. NSCs fluoresce red during the G1 phase and are non-fluorescent in other cell-cycle phases. An adhered NSC culture is placed in the imaging chamber, imaging parameters are...

Visualization of Craniofacial Development in the sox10: kaede Transgenic Zebrafish Line Using Time-lapse Confocal Microscopy

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Cited by 7 •

2013

Visualization of experimental data has become a key element in presenting results to the scientific community. Generation of live time-lapse recording of growing embryos contributes to better presentation and understanding of complex developmental processes. This protocol is a step-by-step guide to cell labeling via photoconversion of kaede protein in zebrafish.

Research

JoVE Journal - Biology
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Time-lapse Microscopy of Early Embryogenesis in Caenorhabditis elegans

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Cited by 8 •

2011

This article describes a technique for the visualization of the early events of embryogenesis in the nematode Caenorhabditis elegans.

Two-photon axotomy and time-lapse confocal imaging in live zebrafish embryos

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Cited by 65 •

2009

Here we describe a method for mounting zebrafish embryos for long-term imaging, two-photon imaging and tissue-damage techniques, and time-lapse confocal imaging.

Sample Drift Correction Following 4D Confocal Time-lapse Imaging

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Cited by 222 •

2014

Time-lapse microscopy allows the visualization of developmental processes. Growth or drift of samples during image acquisition reduces the ability to accurately follow and measure cell movements during development. We describe the use of open source image processing software to correct for three dimensional sample drift over time.

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