3d Segmentation

3D segmentation is the process of dividing volumetric images into meaningful regions, such as cells, tissues, organs, or other structures, so their geometry and spatial organization can be analyzed. In biological imaging, algorithms classify voxels by features such as intensity, texture, or spatial continuity, using methods that include thresholding, region growing, and machine learning to separate adjacent or overlapping structures across image slices. The resulting three-dimensional masks support measurements of volume, shape, surface area, and spatial relationships. These analyses are important in microscopy, developmental biology, neuroscience, pathology, and biomedical research, where they help quantify cellular organization, track structural changes, and evaluate disease-related phenotypes.

3d Segmentation - Related Videos

Research

JoVE Journal - Bioengineering
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From Voxels to Knowledge: A Practical Guide to the Segmentation of Complex Electron Microscopy 3D-Data

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Cited by 14 •

2014

The bottleneck for cellular 3D electron microscopy is feature extraction (segmentation) in highly complex 3D density maps. We have developed a set of criteria, which provides guidance regarding which segmentation approach (manual, semi-automated, or automated) is best suited for different data types, thus providing a starting point for effective segmentation.

Research

JoVE Journal - Neuroscience

Measuring Properties of the Membrane Periodic Skeleton of the Axon Initial Segment using 3D-Structured Illumination Microscopy (3D-SIM)

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Cited by 4 •

2022

The present protocol describes a method to visualize and measure actin rings and other components of the membrane periodic skeleton of the axon initial segment using cultured rat hippocampal neurons and 3D-structured illumination microscopy (3D-SIM).

Research

JoVE Journal - Biology
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Volume Segmentation and Analysis of Biological Materials Using SuRVoS (Super-region Volume Segmentation) Workbench

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Cited by 10 •

2017

Segmentation of three-dimensional data from many imaging techniques is a major bottleneck in analysis of complex biological systems. Here, we describe the use of SuRVoS Workbench to semi-automatically segment volumetric data at various length-scales using example datasets from cryo-electron tomography, cryo soft X-ray tomography, and phase contrast X-ray tomography techniques.

Anterior Eye Segment Dissection: A Method to Isolate Cornea Bearing Anterior Segment from Porcine Eye

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2025

In this video, we demonstrate the dissection of the cornea-bearing anterior segment of the porcine eye. The isolated segment can be used for organ culturing to study the pathophysiology of eye disorders.

Anterior Eye Segment Culturing: A Method to Culture Cornea Bearing Anterior Segment of Porcine Eye

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2025

In this video, we demonstrate the culturing method of a cornea-bearing anterior eye segment from a porcine eye. This culture system serves as an experimental model to study eye injuries.

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