Live Animal Imaging

Live animal imaging is the visualization and measurement of biological structure or activity in an intact, living organism, allowing researchers to follow changes over time without removing tissues. In neuroscience, methods such as fluorescence microscopy, magnetic resonance imaging, and positron emission tomography generate signals from fluorescent probes, magnetic properties, or radiotracer distribution, respectively. These approaches can link neuronal activity, connectivity, blood flow, metabolism, and disease progression to behavior while preserving the physiological context of the brain. Longitudinal imaging supports studies of learning, neurodegeneration, and therapeutic response, although resolution, invasiveness, motion, and signal specificity must be balanced when selecting a method.

Live Animal Imaging - Related Videos

Education

JoVE Science Education - Basic Biology

Non-invasive Monitoring and Imaging in Animal Research

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2026

All animal procedures described here must be conducted in accordance with institutional animal ethics guidelines and approved by IACUC. All procedures must follow the principles of the 3Rs—Replacement, Reduction, and Refinement—and must be performed by trained personnel. Non-invasive technologies support the principles of 3Rs by enabling repeated data collection from the same animal without the need for euthanasia at multiple time points. These approaches reduce the number of animals required...

Research

JoVE Journal - Biology

Doppler Ultrasonography for Live Imaging and Quantification of Ovarian Vascular Function in Mice

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Cited by 1 •

2025

Changes in ovarian blood flow during the preovulatory period are essential for ovulation. Doppler ultrasonography has been used in humans and large animals to assess ovarian hemodynamics and perfusion. A protocol is presented for applying Doppler ultrasonography to evaluate ovarian hemodynamics during the preovulatory and periovulatory phases in mice.

Live Cell Imaging of Mitosis

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2023

Mitosis is a form of cell division in which a cell’s genetic material is divided equally between two daughter cells. Mitosis can be broken down into six phases, during each of which the cell’s components, such as its chromosomes, show visually distinct characteristics. Advances in fluorescence live cell imaging have allowed scientists to study this process in great detail, providing important insights into the biological control of this process and how it might go wrong in diseases such as...

Computer-Generated Animal Model Stimuli

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Cited by 8 •

2007

Computer-generated stimuli using the Jacky dragon as a model.

Live Cell Imaging during Mechanical Stretch

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Cited by 12 •

2015

A novel imaging protocol was developed using a custom motor-driven mechanical actuator to allow the measurement of real time responses to mechanical strain in live cells. Relevant to mechanobiology, the system can apply strains up to 20% while allowing near real-time imaging with confocal or atomic force microscopy.

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