Robotic right ventricle is a biohybrid platform that simulates right ventricular function in (patho)physiological conditions and intervention

Author:

Singh Manisha,Bonnemain JeanORCID,Ozturk CaglarORCID,Ayers Brian,Saeed Mossab Y.ORCID,Quevedo-Moreno Diego,Rowlett MeaganORCID,Park Clara,Fan Yiling,Nguyen Christopher T.ORCID,Roche Ellen T.ORCID

Abstract

AbstractThe increasing recognition of the right ventricle (RV) necessitates the development of RV-focused interventions, devices and testbeds. In this study, we developed a soft robotic model of the right heart that accurately mimics RV biomechanics and hemodynamics, including free wall, septal and valve motion. This model uses a biohybrid approach, combining a chemically treated endocardial scaffold with a soft robotic synthetic myocardium. When connected to a circulatory flow loop, the robotic right ventricle (RRV) replicates real-time hemodynamic changes in healthy and pathological conditions, including volume overload, RV systolic failure and pressure overload. The RRV also mimics clinical markers of RV dysfunction and is validated using an in vivo porcine model. Additionally, the RRV recreates chordae tension, simulating papillary muscle motion, and shows the potential for tricuspid valve repair and replacement in vitro. This work aims to provide a platform for developing tools for research and treatment for RV pathophysiology.

Funder

National Science Foundation

MIT Philips Award

Lausanne University Hospital Improvement fund and the SICPA Foundation

U.S. Department of Health & Human Services | NIH | National Heart, Lung, and Blood Institute

Publisher

Springer Science and Business Media LLC

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