Literature DB >> 27138523

Multi-scale Modeling of the Cardiovascular System: Disease Development, Progression, and Clinical Intervention.

Yanhang Zhang1, Victor H Barocas2, Scott A Berceli3, Colleen E Clancy4, David M Eckmann5, Marc Garbey6, Ghassan S Kassab7, Donna R Lochner8, Andrew D McCulloch9, Roger Tran-Son-Tay10, Natalia A Trayanova11.   

Abstract

Cardiovascular diseases (CVDs) are the leading cause of death in the western world. With the current development of clinical diagnostics to more accurately measure the extent and specifics of CVDs, a laudable goal is a better understanding of the structure-function relation in the cardiovascular system. Much of this fundamental understanding comes from the development and study of models that integrate biology, medicine, imaging, and biomechanics. Information from these models provides guidance for developing diagnostics, and implementation of these diagnostics to the clinical setting, in turn, provides data for refining the models. In this review, we introduce multi-scale and multi-physical models for understanding disease development, progression, and designing clinical interventions. We begin with multi-scale models of cardiac electrophysiology and mechanics for diagnosis, clinical decision support, personalized and precision medicine in cardiology with examples in arrhythmia and heart failure. We then introduce computational models of vasculature mechanics and associated mechanical forces for understanding vascular disease progression, designing clinical interventions, and elucidating mechanisms that underlie diverse vascular conditions. We conclude with a discussion of barriers that must be overcome to provide enhanced insights, predictions, and decisions in pre-clinical and clinical applications.

Entities:  

Keywords:  Cardiac mechanics; Cardiovascular fluid mechanics; Constitutive model; Electrophysiological modeling; Extracellular matrix; Mechanical forces; Multi-scale modeling; Pathway network analysis; Vascular mechanics

Mesh:

Year:  2016        PMID: 27138523      PMCID: PMC4983486          DOI: 10.1007/s10439-016-1628-0

Source DB:  PubMed          Journal:  Ann Biomed Eng        ISSN: 0090-6964            Impact factor:   3.934


  161 in total

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Journal:  Brief Bioinform       Date:  2009-03-17       Impact factor: 11.622

4.  Mechanical blood-tissue interaction in contracting muscles: a model study.

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Journal:  J Biomech       Date:  1998-05       Impact factor: 2.712

5.  A small angle light scattering device for planar connective tissue microstructural analysis.

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Authors:  H E ter Keurs
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7.  Mitochondrial free [Ca2+] increases during ATP/ADP antiport and ADP phosphorylation: exploration of mechanisms.

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Journal:  Biophys J       Date:  2010-08-09       Impact factor: 4.033

8.  Novel role for vinculin in ventricular myocyte mechanics and dysfunction.

Authors:  Jared R Tangney; Joyce S Chuang; Matthew S Janssen; Adarsh Krishnamurthy; Peter Liao; Masahiko Hoshijima; Xin Wu; Gerald A Meininger; Mariappan Muthuchamy; Alice Zemljic-Harpf; Robert S Ross; Lawrence R Frank; Andrew D McCulloch; Jeffrey H Omens
Journal:  Biophys J       Date:  2013-04-02       Impact factor: 4.033

Review 9.  Multiscale computational models of complex biological systems.

Authors:  Joseph Walpole; Jason A Papin; Shayn M Peirce
Journal:  Annu Rev Biomed Eng       Date:  2013-04-29       Impact factor: 9.590

10.  Patient-Specific Models of Cardiac Biomechanics.

Authors:  Adarsh Krishnamurthy; Christopher T Villongco; Joyce Chuang; Lawrence R Frank; Vishal Nigam; Ernest Belezzuoli; Paul Stark; David E Krummen; Sanjiv Narayan; Jeffrey H Omens; Andrew D McCulloch; Roy Cp Kerckhoffs
Journal:  J Comput Phys       Date:  2013-07-01       Impact factor: 3.553

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  17 in total

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Authors:  Williams E Miranda; Van A Ngo; Laura L Perissinotti; Sergei Yu Noskov
Journal:  Biochim Biophys Acta Proteins Proteom       Date:  2017-08-26       Impact factor: 3.036

2.  Structural and Functional Differences Between Porcine Aorta and Vena Cava.

Authors:  Jeffrey M Mattson; Yanhang Zhang
Journal:  J Biomech Eng       Date:  2017-07-01       Impact factor: 2.097

3.  Vascular Adaptation: Pattern Formation and Cross Validation between an Agent Based Model and a Dynamical System.

Authors:  Marc Garbey; Stefano Casarin; Scott A Berceli
Journal:  J Theor Biol       Date:  2017-06-21       Impact factor: 2.691

Review 4.  Machine Learning for Cardiovascular Biomechanics Modeling: Challenges and Beyond.

Authors:  Amirhossein Arzani; Jian-Xun Wang; Michael S Sacks; Shawn C Shadden
Journal:  Ann Biomed Eng       Date:  2022-04-20       Impact factor: 3.934

Review 5.  Personalized Management of Cardiovascular Disorders.

Authors:  Kewal K Jain
Journal:  Med Princ Pract       Date:  2017-09-11       Impact factor: 1.927

6.  Multiscale Computational Analysis of Right Ventricular Mechanoenergetics.

Authors:  Ryan J Pewowaruk; Jennifer L Philip; Shivendra G Tewari; Claire S Chen; Mark S Nyaeme; Zhijie Wang; Diana M Tabima; Anthony J Baker; Daniel A Beard; Naomi C Chesler
Journal:  J Biomech Eng       Date:  2018-08-01       Impact factor: 2.097

Review 7.  Cardiovascular disease models: A game changing paradigm in drug discovery and screening.

Authors:  Houman Savoji; Mohammad Hossein Mohammadi; Naimeh Rafatian; Masood Khaksar Toroghi; Erika Yan Wang; Yimu Zhao; Anastasia Korolj; Samad Ahadian; Milica Radisic
Journal:  Biomaterials       Date:  2018-10-01       Impact factor: 12.479

8.  Global Optimization of Ventricular Myocyte Model to Multi-Variable Objective Improves Predictions of Drug-Induced Torsades de Pointes.

Authors:  Trine Krogh-Madsen; Anna F Jacobson; Francis A Ortega; David J Christini
Journal:  Front Physiol       Date:  2017-12-19       Impact factor: 4.566

9.  Cardiorenal Systems Modeling: Left Ventricular Hypertrophy and Differential Effects of Antihypertensive Therapies on Hypertrophy Regression.

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Journal:  Front Physiol       Date:  2021-06-16       Impact factor: 4.566

10.  Regenerated Microvascular Networks in Ischemic Skeletal Muscle.

Authors:  Hao Yin; John-Michael Arpino; Jason J Lee; J Geoffrey Pickering
Journal:  Front Physiol       Date:  2021-06-11       Impact factor: 4.566

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