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November 1, 2022Journal of The Royal Society InterfaceOpen Access

The computational framework predicted a 68.2% increase in mean PA pressure, 38% increase in RV end-diastolic volume, and 90% increase in collagen mass, consistent with clinical and experimental measurements of PAH.

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Population

Computational model coupling the RV and proximal PA in a closed-loop circulatory system

Design

Computational modelling study

Authors

RPReza PourmodhejiZJZhenxiang JiangCTChristopher Tossas-Betancourt

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Overview

Offers framework for RV-PA G&R in PAH; leaves open validation before clinical use.

Structured PICO

P
Population
Computational model of the right ventricle (RV) and proximal pulmonary artery (PA) in a closed-loop circulatory system simulating pulmonary arterial hypertension (PAH)
O
Outcome
Changes in haemodynamics, RV geometry, and PA tissue microstructure

A novel computational framework successfully models the concurrent growth and remodeling of the right ventricle and pulmonary artery during PAH progression, providing a foundation for future predictive cardiovascular models.

Cite This Study

Pourmodheji et al. (2022) studied this question.

synapsesocial.com/papers/6a783aeed3a6aa87c6be2f66https://doi.org/10.1098/rsif.2022.0534
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