Image Slice Merging

Image slice merging is a computational method that combines sequential two-dimensional images into a continuous representation of three-dimensional anatomy, making it important for reconstructing brain structures from sectioned or scanned tissue. The process aligns neighboring slices through image registration, corrects differences in position or distortion, and blends overlapping regions to reduce visible boundaries and preserve anatomical continuity. In neuroscience, merged image stacks support visualization and quantitative analysis of neural circuits, cortical layers, lesions, and other structures across tissue volumes. This approach improves spatial interpretation and provides a foundation for 3D reconstruction, segmentation, and comparisons between experimental samples.

Image Slice Merging - Related Videos

Research

JoVE Journal - Bioengineering
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Fluorescence Recovery after Merging a Droplet to Measure the Two-dimensional Diffusion of a Phospholipid Monolayer

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Cited by 2 •

2015

We present a new technique to measure the lateral diffusion of a surface active species at the fluid-fluid interface by merging a droplet monolayer onto a flat monolayer.

Research

JoVE Journal - Neuroscience

Imaging Calcium Responses in GFP-tagged Neurons of Hypothalamic Mouse Brain Slices

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Cited by 5 •

2012

In this protocol, we update recent progress in imaging Ca2+ signals of GFP-tagged neurons in brain tissue slices using a red fluorescent Ca2+ indicator dye.

Preparation of Acute Subventricular Zone Slices for Calcium Imaging

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Cited by 2 •

2012

A method to load subventricular zone (SVZ) cells with calcium indicator dyes for recording calcium activity is described. The postnatal SVZ contains tightly packed cells including neural progenitor cells and neuroblasts. Rather than using bath loading we injected the dye by pressure inside the tissue allowing better dye diffusion.

Ex Vivo Culture and Imaging of Oculomotor Slices from Transgenic Mouse Embryos

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2025

This video demonstrates the ex vivo culture and imaging of oculomotor slices from transgenic mouse embryos. The embryos are isolated and embedded in agarose. Using a vibratome, slices containing the oculomotor nuclei and eyes are obtained. The slices are maintained in culture and imaged using a fluorescence microscope.

A Rapid Approach to High-Resolution Fluorescence Imaging in Semi-Thick Brain Slices

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Cited by 10 •

2011

Here we describe a rapid and simple method to image fluorescently labeled cells in semi-thick brain slices. By fixing, slicing, and optically clearing brain tissue we describe how standard epifluorescent or confocal imaging can be used to visualize individual cells and neuronal networks within intact nervous tissue.

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