A parametric study on pulse duplicator design and valve hemodynamics

Author:

Smid Caroline C.1ORCID,Pappas Georgios A.1ORCID,Falk Volkmar234ORCID,Ermanni Paolo1ORCID,Cesarovic Nikola23ORCID

Affiliation:

1. Laboratory of Composite Materials and Adaptive Structures, ETH Zurich Zürich Switzerland

2. Translational Cardiovascular Technologies, ETH Zurich Zürich Switzerland

3. Department for Cardiothoracic and Vascular Surgery, Deutsches Herzzentrum der Charité Charité Universitätsmedizin Berlin Berlin Germany

4. German Center for Cardiovascular Research (DZHK), Partner Site Berlin Berlin Germany

Abstract

AbstractBackgroundIn vitro assessment is mandatory for artificial heart valve development. This study aims to investigate the effects of pulse duplicator features on valve responsiveness, conduct a sensitivity analysis across valve prosthesis types, and contribute on the development of versatile pulse duplicator systems able to perform reliable prosthetic aortic valve assessment under physiologic hemodynamic conditions.MethodsA reference pulse duplicator was established based on literature. Further optimization process led to new designs that underwent a parametric study, also involving different aortic valve prostheses. These designs were evaluated on criteria such as mean pressure differential and pulse pressure (assessed from high‐fidelity pressure measurements), valve opening and closing behavior, flow, and regurgitation. Finally, the resulting optimized setup was tested under five different hemodynamic settings simulating a range of physiologic and pathologic conditions.ResultsThe results show that both, pulse duplicator design and valve type significantly influence aortic and ventricular pressure, flow, and valve kinematic response. The optimal design comprised key features such as a compliance chamber and restrictor for diastolic pressure maintenance and narrow pulse pressure. Additionally, an atrial reservoir was included to prevent atrial–aortic interference, and a bioprosthetic valve was used in mitral position to avoid delayed valve closing effects.ConclusionThis study showed that individual pulse duplicator features can have a significant effect on valve's responsiveness. The optimized versatile pulse duplicator replicated physiologic and pathologic aortic valve hemodynamic conditions, serving as a reliable characterization tool for assessing and optimizing aortic valve performance.

Funder

Eidgenössische Technische Hochschule Zürich

Publisher

Wiley

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