Optical Window Implantation

Optical window implantation is a neuroscience technique that places a transparent window over exposed brain tissue to permit repeated imaging in living animals. It matters because it enables researchers to monitor cellular and vascular activity over time without repeatedly removing bone. During the procedure, a section of skull is removed and replaced with a glass or other optical implant, which is sealed to stabilize the cranial surface and provide an imaging path for methods such as two-photon microscopy. This preparation supports longitudinal studies of neuronal dynamics, neurovascular interactions, disease progression, and responses to experimental treatments, while improving measurement of changes within the same subject.

Optical Window Implantation - Related Videos

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JoVE EoE - Cancers of the Nervous System

Implantation of Cranial Imaging Window in Mouse Model: A Surgical Procedure to Implant Glass-based Coverslip for Stable Optical Access to Regions of Murine Brain

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2023

This video presents a surgical procedure to implant cranial window in a mouse model for stable optical access to different regions of the brain.

Spinal Cord Window Implantation in a Mouse for In Vivo Imaging

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2025

Source: Pietruczyk, E. A., et al. Laminectomy and Spinal Cord Window Implantation in the Mouse. J. Vis. Exp. (2019)This video demonstrates the implantation of a spinal cord window in an anesthetized mouse for in vivo imaging. The protocol stabilizes the exposed spinal cord using a borosilicate cover glass and a 3D-printed backplate. This method enables high-resolution two-photon microscopy to study blood-brain barrier dynamics and neurovascular interactions.

Research

JoVE Journal - Bioengineering
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Microfabrication of Implantable Optics Integrated in a Microstructured Imaging Window for Advanced In Vivo Imaging

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2025

This protocol describes the fabrication of an implantable integrated imaging window using 3D laser printing. The window consists of a system of microlenses coupled with micro-scaffolds. The method involves two-photon polymerization (2PP) of the biocompatible photoresist SZ2080 in a continuous sequence, optimizing manufacturing efficiency and alignment between the different components.

Installation of Optical Windows in the Brain of Transgenic Mice to Image Neural Activities

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2025

This video demonstrates the brain's neural activity recording through an optical window in transgenic mice. The mice express a fluorescent protein that enables the detection of neural activities. A small portion of the skull is carefully removed to install an optical window, and the skull is then covered with black cement to block light before imaging.

Implanting an Electrode Array and Optic Fiber into the Mouse Hippocampus

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2025

This video demonstrates the stereotactic implantation of a wire electrode array and an optic fiber in the hippocampus of a mouse model.

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