Medical Engineering & Physics
Volume 29, Issue 8 , Pages 829-839, October 2007

Modeling, analysis, and validation of a pneumatically driven left ventricle for use in mock circulatory systems

Mechanical Engineering Department, University of Calabria, Via Ponte P. Bucci, Cubo 44C, 87030 Rende, CS, Italy

Received 12 June 2006; received in revised form 25 August 2006; accepted 10 September 2006. published online 23 October 2006.

Abstract 

In this work a pneumatically driven mock left ventricle and a native left ventricle are modeled and alternatively connected to the numerical model of a closed circulatory system comprising the systemic circulation, the left atrium, and inlet and outlet ventricular valves. By simulating physiological changes of the system working conditions, behavior and preload sensitivity of the pneumatic ventricle have been compared to those of a native ventricle.

Results show that a pneumatic ventricle, when used as a fluid actuator in mock circulations, has low flexibility in reproducing different scenarios, its interaction with peripheral circulatory districts is characterized by non-physiological values, and its preload sensitivity is in poor agreement with physiological data. Results’ analysis also shows that present mock circulatory systems for testing cardiovascular prostheses are inadequate, if a careful attention is not paid to the pumping action of the pneumatic ventricle.

The presented computer model, validated by comparing numerical results with in vitro measurements available in the literature, can be used for designing in vitro experiments, while choosing the best control strategy for pneumatic systems.

Keywords: Modeling, Pneumatic ventricle, Mock circulatory system, Non-linear elastance, Test bench, Pneumatic drive line, Starling, Cardiac output, Venous return

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PII: S1350-4533(06)00187-1

doi:10.1016/j.medengphy.2006.09.004

Medical Engineering & Physics
Volume 29, Issue 8 , Pages 829-839, October 2007