Document Type

Article

Publication Date

11-2016

Publication Title

Journal of Biomechanical Engineering

Volume

138

Issue

11

Publisher

ASME

DOI

https://doi.org/10.1115/1.4034561

Abstract

Benchtop in vitro experiments are valuable tools for investigating the cardiovascular system and testing medical devices. Accurate reproduction of the physiologic flow waveforms at various anatomic locations is an important component of these experimental methods. This study discusses the design, construction, and testing of a low-cost and fully programmable pulsatile flow pump capable of continuously producing unlimited cycles of physiologic waveforms. It consists of a gear pump actuated by an AC servomotor and a feedback algorithm to achieve highly accurate reproduction of flow waveforms for flow rates up to 300 ml/s across a range of loading conditions. The iterative feedback algorithm uses the flow error values in one iteration to modify the motor control waveform for the next iteration to better match the desired flow. Within four to seven iterations of feedback, the pump replicated desired physiologic flow waveforms to within 2% normalized RMS error (for flow rates above 20 mL/s) under varying downstream impedances. This pump device is significantly more affordable (∼10% of the cost) than current commercial options. More importantly, the pump can be controlled via common scientific software and thus easily implemented into large automation frameworks.

Comments

This manuscript has been published in the Journal of Biomechanical Engineering. Please find the published version here (note that a subscription is necessary to access this version):

https://asmedigitalcollection.asme.org/biomechanical/article-lookup/doi/10.1115/1.4034561

ASME holds the copyright in this article.

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