Live Time-lapse Imaging

Live time-lapse imaging is a microscopy approach that records living cells, tissues, or organisms at repeated intervals to reveal biological changes over time. It works by maintaining viable specimens under controlled environmental conditions while automated image acquisition tracks labeled structures, such as fluorescent proteins or cellular membranes, across sequential frames. In neuroscience, this method can visualize neuronal migration, axon and dendrite growth, synapse formation, and cellular responses in culture or intact neural tissue. Quantitative analysis of these image sequences links structural changes to developmental or disease-related mechanisms, while careful control of illumination, temperature, and imaging frequency helps limit phototoxicity and preserve normal behavior.

Live Time-lapse Imaging - Related Videos

Research

JoVE Journal - Biology

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.

Live-Cell Time-Lapse Imaging of Bdellovibrio bacteriovorus Predation on E. coli

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2026

Source: Makowski, Ł., et al. Live-Cell Imaging of the Life Cycle of Bacterial Predator Bdellovibrio bacteriovorus using Time-Lapse Fluorescence Microscopy. J. Vis. Exp. (2020)This video demonstrates time-lapse fluorescence imaging of Bdellovibrio bacteriovorus preying on immobilized E. coli beneath an agarose pad, enabling real-time visualization of intracellular replication and progeny release for studying bacterial predation and host-pathogen interactions.

Motor Nerve Transection and Time-lapse Imaging of Glial Cell Behaviors in Live Zebrafish

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Cited by 14 •

2013

Although the peripheral nervous system (PNS) is capable of significant repair after injury, little is known about the cellular and molecular mechanisms that govern this phenomenon. Using live, transgenic zebrafish and a reproducible nerve transection assay, we can study dynamic glial cell behaviors during nerve degeneration and regeneration.

Research

JoVE Journal - Immunology and Infection
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Live Cell Imaging of Bacillus subtilis and Streptococcus pneumoniae using Automated Time-lapse Microscopy

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Cited by 157 •

2011

This protocol provides a step-by-step procedure to monitor single cell behavior of different bacteria in time using automated fluorescence time-lapse microscopy. Furthermore, we provide guidelines how to analyze the microscopy images.

Time-lapse Live Imaging of Clonally Related Neural Progenitor Cells in the Developing Zebrafish Forebrain

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Cited by 11 •

2011

The present video demonstrates a method which takes advantage of the combination of electroporation and confocal microscopy to perform live imaging on individual neural progenitor cells in the developing zebrafish forebrain. In vivo analysis of the development of forebrain neural progenitor cells at a clonal level can be achieved in this way.

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