Vascular Segmentation

Vascular segmentation is the process of identifying and delineating blood vessels in medical images, creating a map of vascular anatomy for diagnosis, treatment planning, and research. It works by distinguishing vessel pixels or voxels from surrounding tissue through image preprocessing, contrast enhancement, thresholding, region growing, or machine-learning-based classification, often followed by refinement of vessel boundaries and connectivity. In medicine, segmentation supports measurements of vessel diameter, length, branching, and tortuosity, while helping characterize stenosis, aneurysms, and other vascular abnormalities. Reliable vascular maps also guide surgical and endovascular planning and provide quantitative data for computational modeling and clinical studies.

Vascular Segmentation - Related Videos

Research

JoVE EoE - Large Animal Models

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.

Engineered Vascularized Muscle Flap

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Cited by 6 •

2016

To date, thick tissue defects are typically reconstructed by applying autologous tissue flaps or engineered tissues. In this protocol, we present a new method for engineering vascularized tissue flap bearing an autologous pedicle, to serve as a substitute to autologous flaps.

Laparoscopic Left Liver Sectoriectomy of Caroli's Disease Limited to Segment II and III

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Cited by 5 •

2009

This video presents a case of laparoscopic left liver sectoriectomy perfomed in a 53 year old man suffering from Caroli's disease limited to segment II and III of the liver.

A Full Skin Defect Model to Evaluate Vascularization of Biomaterials In Vivo

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Cited by 13 •

2014

Vascularization is key to approaches in successful tissue engineering. Therefore, reliable technologies are required to evaluate the development of vascular networks in tissue-constructs. Here we present a simple and cost-effective method to visualize and quantify vascularization in vivo.

Research

JoVE Journal - Biology
Free Sample

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.

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