Dynamic Imaging

Dynamic imaging is the acquisition and analysis of time-resolved images that reveal how biological structures and processes change, providing information that static images cannot capture. In developmental biology, researchers use time-lapse microscopy, often with fluorescent labels, to follow living cells and tissues as they divide, migrate, differentiate, and reorganize under controlled conditions. By linking cellular behavior to timing, location, and interactions, dynamic imaging helps clarify the mechanisms that shape embryos, organ formation, and tissue patterning. It also supports quantitative analysis of developmental dynamics, enabling researchers to compare normal and perturbed systems and connect observed movement or morphology with underlying biological processes.

Dynamic Imaging - Related Videos

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JoVE EoE - Neuroimaging

Spontaneous Calcium Imaging for Compartment-Specific Dynamics in Astrocytes

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2025

Source: Bannai, H., et. al., Dissection of Local Ca2+ Signals in Cultured Cells by Membrane-targeted Ca2+ Indicators. J. Vis. Exp. (2019)The video demonstrates fluorescence imaging to observe compartment-specific spontaneous calcium dynamics in astrocytes by sequentially monitoring calcium-sensitive proteins localized on the plasma membrane and endoplasmic reticulum.

In Vivo Two-Photon Imaging of Microglial Dynamics in the Mouse Hippocampus

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2025

Source: Kamei, R., et. al., In Vivo Chronic Two-Photon Imaging of Microglia in the Mouse Hippocampus. J. Vis. Exp. (2022)The video demonstrates the setup and imaging process for in vivo two-photon microscopy of microglial dynamics in the hippocampal CA1 (Cornu ammonis 1) and dentate gyrus, ensuring optimal optical alignment and structural integrity assessment.

Extended Time-lapse Intravital Imaging of Real-time Multicellular Dynamics in the Tumor Microenvironment

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Cited by 25 •

2016

This protocol describes the use of multiphoton microscopy to perform extended time-lapse imaging of multicellular interactions in real time, in vivo at single cell resolution.

Research

JoVE Journal - Medicine
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Quantitative Visualization and Detection of Skin Cancer Using Dynamic Thermal Imaging

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Cited by 69 •

2011

We demonstrated that malignant pigmented lesions with increased metabolic activity generate quantifiable amounts of heat and the measurement of the transient thermal response of the skin to a cooling excitation allows quantitative identification of melanoma and other skin cancers (vs. non-proliferative nevi) at an early stage of the disease.

Fluorescence Imaging of Neuro-Immune Dynamics Using a Skull Implant

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2025

Source: Bisht, K., et al. Precise brain mapping to perform repetitive in vivo imaging of neuro-immune dynamics in mice. J. Vis. Exp. (2020)This video demonstrates fluorescence imaging of neuro-immune dynamics in a transgenic mouse with a skull implant. Vascular and neuronal stability is imaged alongside dynamic microglial changes, reflecting immune responses to neuronal activity.

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