Human Aorta Model

A human aorta model is an engineered, computational, or laboratory-based representation of the aorta used to study its structure, mechanics, and biological function. In bioengineering, these models reproduce key features such as vessel geometry, layered wall composition, blood-flow patterns, and pressure-induced deformation, allowing researchers to examine how cells and tissues respond to hemodynamic forces. Human aorta models support research on aneurysms, atherosclerosis, vascular remodeling, and medical-device performance by providing controlled platforms for testing hypotheses and treatments. They can also complement animal studies and guide the design of patient-specific therapies, vascular grafts, and advanced diagnostic tools.

Human Aorta Model - Related Videos

Research

JoVE EoE - Large Animal Models

Exposing Infrarenal Abdominal Aorta in Porcine Model: A Surgical Procedure to Access Porcine Infrarenal Abdominal Aorta for Further Studies

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2025

This video demonstrates the surgical procedure to locate and dissect the infrarenal aorta from the surrounding tissues for accessing it. The exposed aorta can be used for further studies.

A Model of Cardiac Remodeling Through Constriction of the Abdominal Aorta in Rats

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Cited by 26 •

2016

A rat model of abdominal aortic constriction that induces cardiac hypertrophy and remodeling is described. An efficient, highly-reproducible, and minimally-invasive method is used to provide a simple yet useful platform for research in myocardial hypertrophy and dysfunction.

Porcine Aorta Isolation: A Surgical Procedure to Excise the Thoracic Aorta From Miniature Pigs for Downstream Analysis

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2025

In this video, we demonstrate a procedure for the surgical removal of the aorta from miniature pigs. Endothelial cells harvested from these isolated aortae can be further cultured in in vitro conditions to study coagulation and immune responses.

Research

JoVE Journal - Biology
Free Sample

In Vivo Modeling of the Morbid Human Genome using Danio rerio

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Cited by 66 •

2013

Here, we present a systematic approach for developing physiologically relevant, sensitive and specific in vivo assays for interpreting variation in human pathology. Transient genetic manipulation via microinjection of WT and mutant human mRNA and morpholino (MO) antisense oligonucleotides harness the tractability of the developing zebrafish embryo to rapidly assay pathogenic mutations, especially, but not exclusively, in the context of human developmental disorders.

Education

JoVE Science Education - Engineering

High-frequency Ultrasound Imaging of the Abdominal Aorta

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2023

Source: Amelia R. Adelsperger, Evan H. Phillips, and Craig J. Goergen, Weldon School of Biomedical Engineering, Purdue University, West Lafayette, Indiana High-frequency ultrasound systems are used to acquire high resolution images. Here, the use of a state-of-the-art system will be demonstrated to image the morphology and hemodynamics of small pulsatile arteries and veins found in mice and rats. Ultrasound is a relatively inexpensive, portable, and versatile method for the noninvasive...

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