Aortic Dissection

Aortic dissection is a life-threatening vascular condition in which a tear in the aorta’s inner lining allows blood to separate the layers of the arterial wall, creating a false lumen. Blood pressure drives this separation through the media, potentially restricting blood flow to major branches or causing rupture, while changes in wall structure and connective tissue can increase susceptibility. Studying aortic dissection connects vascular biology with hemodynamics, extracellular matrix organization, and tissue injury. This knowledge supports earlier recognition, risk assessment, surgical and endovascular treatment, and research into therapies that strengthen the aortic wall.

Aortic Dissection - Related Videos

Research

JoVE Journal - Medicine
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Novel and Innovative Hybrid Technique for Type A Aortic Dissection

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2025

The protocol describes ascending aortic replacement combined with endovascular coverage of the entire aortic arch with a fenestrated stent graft in a patient with acute type A aortic dissection in the absence of a tear in the aortic arch.

Research

JoVE Journal - Biology

Aortic Ring Assay

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Cited by 42 •

2009

Angiogenesis, the sprouting of blood vessels from pre-existing vasculature, is associated with both natural and pathological processes. Here we demonstrate an aortic ring assay that allows angiogenic potentiators and inhibitors to be directly added to aortic rings in culture. Sprouting and neovessel outgrowth can be determined by inspecting the aortic rings over a period of 6-12 days.

Full-root Aortic Valve Replacement by Stentless Aortic Xenografts in Patients with Small Aortic Roots

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Cited by 4 •

2017

Full-root aortic valve replacement by stentless aortic xenograft is a viable option in patients with small aortic roots. We describe, a technique for the full-root implantation of stentless aortic xenografts, with emphasis on the management of the proximal suture line and coronary anastomoses, and discuss its limitations and alternative options.

Surgical Aortic Debanding: A Procedure to Study Left Ventricular Reverse Remodeling in Murine Model of Aortic Constriction

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2025

This video demonstrates the technique of aortic debanding, which can lead to reverse remodeling to limit the progression towards heart failure in a murine model. Post debanding, a significant reduction of ventricular afterload triggers regression of ventricular hypertrophy and fibrosis, causing a recovery in cardiac function.

A New Murine Model of Endovascular Aortic Aneurysm Repair

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Cited by 3 •

2013

Histological and biochemical modifications after aneurysm endograft exclusion are still unclear. We describe a new model of endograft implantation on a murine aneurysm. Through thrombus analysis with and without persistant circulating blood stream interface, and new endovascular biomaterials evaluation, this model will help to better understand endovascular aneurysm exclusion pathobiology.

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