Aortic Tissue Imaging

Aortic tissue imaging is the visualization and analysis of the aorta’s structure, composition, and pathology, helping researchers understand vascular biology and disease. Depending on the imaging method, signals from ultrasound waves, X-rays, magnetic fields, or fluorescent labels are converted into images that reveal tissue organization, wall thickness, blood flow, or molecular features. In biology, these approaches support investigation of atherosclerosis, aneurysm formation, vascular remodeling, and responses to injury or treatment. Combining structural and functional measurements can connect changes in extracellular matrix, smooth muscle cells, inflammation, and hemodynamics with disease progression, improving experimental models and guiding the development of diagnostic and therapeutic strategies.

Aortic Tissue Imaging - Related Videos

Research

JoVE Journal - Biology

Three-Dimensional Imaging of Aortic Tissues in Atherosclerosis

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2024

Here, we present optimized tissue-clearing protocols to image the murine aorta in three dimensions (3D). We delineate state-of-the-art procedures for immunostaining, optical clearing, and imaging with the intent to define the anatomical proximity of the peripheral nervous system with atherosclerotic plaques and the adventitia in atherosclerosis.

Education

JoVE Science Education - Engineering

Near-infrared Fluorescence Imaging of Abdominal Aortic Aneurysms

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2023

Source: Arvin H. Soepriatna1, Kelsey A. Bullens2, and Craig J. Goergen1 1 Weldon School of Biomedical Engineering, Purdue University, West Lafayette, Indiana 2 Department of Biochemistry, Purdue University, West Lafayette, Indiana Near-infrared fluorescence (NIRF) imaging is an exciting optical technique that utilizes fluorescent probes to visualize complex biomolecular assemblies in tissues. NIRF imaging has many advantages over conventional imaging methods for noninvasive imaging of diseases.

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.

Calcification of Vascular Smooth Muscle Cells and Imaging of Aortic Calcification and Inflammation

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Cited by 28 •

2016

Vascular calcification is an important predictor of and contributor to human cardiovascular disease. This protocol describes methods for inducing calcification of cultured primary vascular smooth muscle cells and for quantifying calcification and macrophage burden in animal aortas using near-infrared fluorescence imaging.

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.

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