Numerical simulations of cardiovascular diseases and global matter transport
S.S. Simakov, A.S. Kholodov, A.V. Evdokimov, Y.A. Kholodov

TL;DR
This paper presents a comprehensive numerical model of human blood circulation, integrating peripheral, large vessel, and heart dynamics to simulate matter transport and analyze cardiovascular diseases.
Contribution
It introduces a combined numerical model of the entire blood circulation system, including peripheral circulation, large vessels, and the heart, for the first time.
Findings
Simulated matter transport within the human body.
Insights into cardiovascular disease mechanisms.
Potential applications for medical diagnosis and treatment.
Abstract
Numerical model of the peripheral circulation and dynamical model of the large vessels and the heart are discussed in this paper. They combined together into the global model of blood circulation. Some results of numerical simulations concerning matter transport through the human organism and heart diseases are represented in the end.
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Taxonomy
TopicsCardiovascular Health and Disease Prevention
