Bifurcation Hemodynamics

Bifurcation hemodynamics is the study of blood flow through branching vessels and how vessel geometry shapes forces acting on the blood and vascular wall. At a bifurcation, changes in diameter, branch angle, and flow division can produce flow separation, recirculation, and uneven wall shear stress, particularly where streams converge or diverge. These patterns influence endothelial function and help explain why atherosclerotic lesions often develop near arterial branches. Understanding bifurcation hemodynamics supports medical imaging, cardiovascular risk assessment, computational flow modeling, and the design and placement of vascular stents, while improving interpretation of how altered anatomy affects circulation.

Bifurcation Hemodynamics - Related Videos

Research

JoVE Journal - Medicine

Microsurgical Venous Pouch Arterial-Bifurcation Aneurysms in the Rabbit Model: Technical Aspects

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Cited by 11 •

2011

An optimized technique for the microsurgical creation of arterial bifurcation aneurysms mimicking bifurcation human cerebral aneurysms is described. A venous pouch is sutured into an artificially created true bifurcation of both common carotid arteries. Facilitated microsurgical techniques and aggressive postoperative anticoagulation and analgesia lead to minimized morbidity rates and high aneurysm patency rates.

A Novel Ex Ovo Banding Technique to Alter Intracardiac Hemodynamics in an Embryonic Chicken System

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Cited by 2 •

2016

For the first time we present here a reproducible banding procedure to alter hemodynamics in the developing heart ex ovo. This is achieved by partially constricting the outflow tract (OFT).

Research

JoVE Journal - Bioengineering
Free Sample

A Magnetic Resonance Imaging-based Computational Protocol for Analysis of Plaque Morphology and Hemodynamics in Patients with Carotid Artery Stenosis

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Cited by 1 •

2025

Assessment of internal carotid artery (ICA) stenosis is based on the estimation of percentage stenosis, which does not account for physiologically relevant risk factors for stroke such as plaque composition and hemodynamics. This protocol leverages quantitative magnetic resonance imaging and computational fluid dynamics to characterize ICA plaque composition and hemodynamics.

Research

JoVE Journal - Medicine
Free Sample

Early Detection of Drug-Induced Renal Hemodynamic Dysfunction Using Sonographic Technology in Rats

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Cited by 14 •

2016

Early stage hemodynamic dysfunction is critical to the development of kidney disease. Yet, detection methodologies are limited. Recent advances in sonography provide a noninvasive, accurate option for early detection of kidney injury. This study outlines a step-by-step, sonographic methodology for detecting kidney dysfunction using a drug-induced nephrotoxicity rat model.

Arterial Pouch Microsurgical Bifurcation Aneurysm Model in the Rabbit

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Cited by 11 •

2020

Developing and testing endovascular devices for intracranial aneurysm treatment is still of great importance. Most aneurysm models used today miss either the important characteristics of an arterial degenerated wall or the hemodynamics of a true bifurcation. Therefore, we aimed to design a novel arterial pouch bifurcation model in rabbits.

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