Subcellular Region Segmentation

Subcellular region segmentation is an image-analysis method that identifies and outlines structures or compartments within individual cells, such as nuclei, cytoplasm, organelles, or membrane-associated regions. It works by assigning image pixels to biologically meaningful regions using intensity differences, fluorescent labels, boundary detection, or machine-learning models, often followed by processing steps that separate touching structures and refine their shapes. In biology, this approach converts microscopy images into quantitative data, enabling researchers to measure region size, shape, spatial organization, and changes across developmental stages, disease conditions, or experimental treatments. These measurements support studies of cell function, signaling, morphology, and disease-related cellular alterations.

Subcellular Region Segmentation - Related Videos

Research

JoVE Journal - Biology
Free Sample

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

0 Views •

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.

Research

JoVE Journal - Developmental Biology

Imaging Subcellular Structures in the Living Zebrafish Embryo

0 Views •

Cited by 8 •

2016

Imaging the dynamic behavior of organelles and other subcellular structures in vivo can shed light on their function in physiological and disease conditions. Here, we present methods for genetically tagging two organelles, centrosomes and mitochondria, and imaging their dynamics in living zebrafish embryos using wide-field and confocal microscopy.

An Immunolabeling Technique to Visualize the Subcellular Localization of Proteins

0 Views •

2025

This video demonstrates a technique for the immunolabeling of sigma-1 receptors in a murine heart tissue section using quantum dots. The heart tissue is fixed, osmicated, stained, dehydrated, embedded in resin, and then sectioned. The sections are then treated with antibodies and labeled with quantum dots to demarcate the subcellular localization of Sigma-1 receptors using electron microscopy.

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

0 Views •

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

0 Views •

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.

View All Results

FAQs

Related Topics