Multi-photon Imaging

Multi-photon imaging is a fluorescence microscopy technique that captures cellular and molecular activity within living tissue while limiting light exposure above and below the focal plane. It uses pulsed, near-infrared laser light to excite fluorescent molecules through the near-simultaneous absorption of two or more photons, producing fluorescence only at the focal point and enabling imaging deeper into scattering tissue. In neuroscience, this approach supports visualization of neurons, dendritic structures, blood vessels, and calcium or voltage indicators in intact brain preparations. Its optical sectioning and reduced photodamage make it valuable for studying neural circuits, brain dynamics, and disease-related changes over time.

Multi-photon Imaging - Related Videos

Research

JoVE Journal - Medicine
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Multi-photon Imaging of Tumor Cell Invasion in an Orthotopic Mouse Model of Oral Squamous Cell Carcinoma

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Cited by 15 •

2011

A comprehensive overview of the techniques involved in generating a mouse model of oral cancer and quantitative monitoring of tumor invasion within the tongue through multi-photon microscopy of labeled cells is presented. This system can serve as a useful platform for the molecular assessment and drug efficacy of anti-invasive compounds.

Research

JoVE EoE - Neuroimaging

Two-Photon In Vivo Imaging of the Mouse Retina

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2025

Source: Wang, Z., et al. Transpupillary Two-Photon In Vivo Imaging of the Mouse Retina. J. Vis. Exp. (2021).This video demonstrates a technique for in vivo retinal imaging using two-photon microscopy. Anesthetized mice are prepared for imaging by securing their heads, Applying eye lubricant, and placing a coverslip over the eye. Retinal ganglion cells (RGCs) expressing fluorescent proteins are first visualized using epifluorescence for alignment. Finally, two-photon imaging is employed,...

Multi-Photon Time Lapse Imaging to Visualize Development in Real-time: Visualization of Migrating Neural Crest Cells in Zebrafish Embryos

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Cited by 7 •

2017

A combination of the advanced optical techniques of laser scanning microscopy with long wavelength multi-photon fluorescence excitation was implemented to capture high-resolution, three-dimensional, real-time imaging of neural crest migration in Tg(sox10:EGFP) and Tg(foxd3:GFP) zebrafish embryos.

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.

Deep-Tissue Imaging of a Zebrafish Brain Using a Three-Photon Fluorescence Microscope

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2025

Source: Hontani, Y., et al. Deep-Tissue Three-Photon Fluorescence Microscopy in Intact Mouse and Zebrafish Brain. J. Vis. Exp. (2022)This video demonstrates the setup and execution of three-photon imaging in an anesthetized zebrafish brain. The protocol enables deep-tissue visualization of fluorescently labeled neurons, revealing real-time neuronal activity and structures for neuroscience research applications.

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