Computational Heart Modeling

Computational heart modeling is the use of mathematical and computer-based representations to simulate the heart’s electrical activity, mechanical contraction, and blood flow. Models combine physiological principles with data such as cardiac anatomy, imaging, and pressure or flow measurements, then use numerical methods to predict how heart tissue and blood respond over time under different conditions. In bioengineering, these simulations support investigation of arrhythmias, cardiac function, and disease progression while reducing reliance on experimental testing alone. They also help evaluate medical devices, plan personalized interventions, and guide the development of therapies by linking measurable patient features to predicted cardiovascular outcomes.

Computational Heart Modeling - Related Videos

Research

JoVE Journal - Bioengineering

Patient-specific Modeling of the Heart: Estimation of Ventricular Fiber Orientations

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Cited by 14 •

2013

A methodology to estimate ventricular fiber orientations from in vivo images of patient heart geometries for personalized modeling is described. Validation of the methodology performed using normal and failing canine hearts demonstrate that that there are no significant differences between estimated and acquired fiber orientations at a clinically observable level.

The Inverted Heart Model for Interstitial Transudate Collection from the Isolated Rat Heart

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2017

This protocol describes a method to collect cardiac interstitial fluid from the isolated, perfused rat heart. To physically separate interstitial transudate from coronary venous effluent perfusate, the Langendorff perfused heart is inverted, and the transudate (interstitial fluid) formed on the cardiac surface is collected using a soft latex cap.

Research

JoVE Journal - Medicine
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An Isolated Working Heart System for Large Animal Models

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Cited by 22 •

2014

Most studies involving the Langendorff apparatus use small animal models due to the increased complexity of systems for larger mammals. We describe a Langendorff system for large animal models that allows for use across a range of species, including humans, and relatively easy data acquisition.

Apical Resection Mouse Model to Study Early Mammalian Heart Regeneration

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Cited by 12 •

2016

A step-by-step video protocol of apical resection is demonstrated in this study. Apical resection is a recently highlighted surgical approach in mammalian heart regeneration research. This study may promote the application of apical resection as a standard methodology in research into the mechanism underlying heart regeneration.

A Standardized Pig to Macaque Heterotopic Heart Xenotransplantation Model

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Cited by 1 •

2025

This study presents a pre-clinical heterotopic abdominal heart xenotransplantation model using α-Gal knockout (GTKO) pigs and macaques. The model incorporates optimized recipient selection, vascular anastomosis techniques, and perioperative management strategies. It is suitable for evaluating novel immunosuppressive agents and provides a convenient platform for advancing heart xenotransplantation.

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