Vascular Subtraction

Vascular subtraction is an imaging technique that isolates blood vessels by removing overlapping anatomical structures from radiographic images, making vascular anatomy easier to visualize. In digital subtraction angiography, a pre-contrast mask image is digitally subtracted from images acquired after contrast injection, suppressing bones and soft tissues while highlighting contrast-filled vessels. In neuroscience, this method supports detailed assessment of cerebral arteries, venous structures, stenoses, aneurysms, and vascular malformations. By improving vessel-to-background contrast, vascular subtraction assists neurovascular research, clinical diagnosis, treatment planning, and evaluation of blood-flow-related changes.

Vascular Subtraction - Related Videos

Research

JoVE EoE - Neuroimaging

Detection of Internal Carotid Artery Narrowing Using Digital Subtraction Angiography

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2025

Position a human patient with internal carotid stenosis, a condition characterized by narrowing of the internal carotid artery, on the imaging table for digital subtraction angiography (DSA). Insert an angiocatheter into the common carotid artery at the fourth cervical vertebra level. Capture a pre-contrast X-ray image to record background structures like bones and soft tissues using X-ray irradiation. Administer an iodine-based contrast medium into the carotid artery. The contrast medium...

Education

JoVE Science Education - Psychology

Measuring Reaction Time and Donders' Method of Subtraction

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2023

Source: Laboratory of Jonathan Flombaum—Johns Hopkins University The ambition of experimental psychology is to characterize the mental events that support the human ability to solve problems, perceive the world, and turn thoughts into words and sentences. But people cannot see or feel those mental events; they cannot be weighed, combined in test tubes, or grown in a dish. Wanting to study mental life, nonetheless, Franciscus Donders, a Dutch ophthalmologist in the early 1800s, came up with a...

Novel Sequence Discovery by Subtractive Genomics

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Cited by 8 •

2019

The purpose of this protocol is to use a combination of computational and bench research to find novel sequences that cannot be easily separated from a co-purifying sequence, which may be only partially known.

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.

Visualization of Vascular and Parenchymal Regeneration after 70% Partial Hepatectomy in Normal Mice

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Cited by 3 •

2016

Tools used for visualizing vascular regeneration require methods for contrasting the vascular trees. This film demonstrated a delicate injection technique used to achieve optimal contrasting of the vascular trees and illustrate the potential benefits resulting from a detailed analysis of the resulting specimen using µCT and histological serial sections.

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