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. 2015 Jan 21;48(2):388-91.
doi: 10.1016/j.jbiomech.2014.11.049. Epub 2014 Dec 9.

Cardiac fluid dynamics anticipates heart adaptation

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Cardiac fluid dynamics anticipates heart adaptation

Gianni Pedrizzetti et al. J Biomech. .
Free article

Abstract

Hemodynamic forces represent an epigenetic factor during heart development and are supposed to influence the pathology of the grown heart. Cardiac blood motion is characterized by a vortical dynamics, and it is common belief that the cardiac vortex has a role in disease progressions or regression. Here we provide a preliminary demonstration about the relevance of maladaptive intra-cardiac vortex dynamics in the geometrical adaptation of the dysfunctional heart. We employed an in vivo model of patients who present a stable normal heart function in virtue of the cardiac resynchronization therapy (CRT, bi-ventricular pace-maker) and who are expected to develop left ventricle remodeling if pace-maker was switched off. Intra-ventricular fluid dynamics is analyzed by echocardiography (Echo-PIV). Under normal conditions, the flow presents a longitudinal alignment of the intraventricular hemodynamic forces. When pacing is temporarily switched off, flow forces develop a misalignment hammering onto lateral walls, despite no other electro-mechanical change is noticed. Hemodynamic forces result to be the first event that evokes a physiological activity anticipating cardiac changes and could help in the prediction of longer term heart adaptations.

Keywords: Cardiac fluid dynamics; Cardiac remodeling; Hemodynamic forces; Vortex.

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