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Main Authors: Sala, Lorenzo, Zaid, Mohamed, Hughes, Faith, Szopos, Marcela, Huxley, Virginia H., Harris, Alon, Guidoboni, Giovanna, Lapin, Sergey
Format: Preprint
Published: 2025
Subjects:
Online Access:https://arxiv.org/abs/2504.06315
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author Sala, Lorenzo
Zaid, Mohamed
Hughes, Faith
Szopos, Marcela
Huxley, Virginia H.
Harris, Alon
Guidoboni, Giovanna
Lapin, Sergey
author_facet Sala, Lorenzo
Zaid, Mohamed
Hughes, Faith
Szopos, Marcela
Huxley, Virginia H.
Harris, Alon
Guidoboni, Giovanna
Lapin, Sergey
contents The cardiovascular and ocular systems are intricately connected, with hemodynamic interactions playing a crucial role in both physiological regulation and pathological conditions. However, existing models often treat these systems separately, limiting the understanding of their interdependence. In this study, we present the Eye2Heart model, a novel closed-loop mathematical framework that integrates cardiovascular and ocular dynamics. Using an electricalhydraulic analogy, the model describes the interactions between the heart and retinal circulation through a system of ordinary differential equations. The model is validated against clinical and experimental data, demonstrating its ability to reproduce key cardiovascular parameters (e.g., stroke volume, cardiac output) and ocular hemodynamics (e.g., retinal blood flow). Additionally, we explore in silico the effects of intraocular pressure (IOP) and left ventricular compliance on both local ocular and global systemic circulation, revealing critical dependencies between cardiovascular and ocular health. The results highlight the model's potential for studying cardiovascular diseases with ocular manifestations, paving the way for patient-specific data integration and expanding applications in personalized medicine.
format Preprint
id arxiv_https___arxiv_org_abs_2504_06315
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Eye2Heart : a validated lumped-parameter model bridging cardiovascular and ocular dynamics
Sala, Lorenzo
Zaid, Mohamed
Hughes, Faith
Szopos, Marcela
Huxley, Virginia H.
Harris, Alon
Guidoboni, Giovanna
Lapin, Sergey
Medical Physics
The cardiovascular and ocular systems are intricately connected, with hemodynamic interactions playing a crucial role in both physiological regulation and pathological conditions. However, existing models often treat these systems separately, limiting the understanding of their interdependence. In this study, we present the Eye2Heart model, a novel closed-loop mathematical framework that integrates cardiovascular and ocular dynamics. Using an electricalhydraulic analogy, the model describes the interactions between the heart and retinal circulation through a system of ordinary differential equations. The model is validated against clinical and experimental data, demonstrating its ability to reproduce key cardiovascular parameters (e.g., stroke volume, cardiac output) and ocular hemodynamics (e.g., retinal blood flow). Additionally, we explore in silico the effects of intraocular pressure (IOP) and left ventricular compliance on both local ocular and global systemic circulation, revealing critical dependencies between cardiovascular and ocular health. The results highlight the model's potential for studying cardiovascular diseases with ocular manifestations, paving the way for patient-specific data integration and expanding applications in personalized medicine.
title Eye2Heart : a validated lumped-parameter model bridging cardiovascular and ocular dynamics
topic Medical Physics
url https://arxiv.org/abs/2504.06315