Experimental study of an asymmetric valveless pump to elucidate insights into strategies for pediatric extravascular flow augmentation

Asymmetric pumping is a sub-category of valveless pumping in which a flexible tube is rhythmically compressed in the transverse symmetry plane. Due to the resulting asymmetry between the suction and discharge pipes, a net pumping head is achieved. Asymmetric pumping is regarded as one of the main me...

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Veröffentlicht in:Scientific reports 2022-12, Vol.12 (1), p.22165-22165, Article 22165
Hauptverfasser: Anatol, J., García-Díaz, M., Barrios-Collado, C., Moneo-Fernández, J. A., Horvath, M., Parra, T., Castro-Ruiz, F., Roche, E. T., Sierra-Pallares, J.
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Sprache:eng
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Zusammenfassung:Asymmetric pumping is a sub-category of valveless pumping in which a flexible tube is rhythmically compressed in the transverse symmetry plane. Due to the resulting asymmetry between the suction and discharge pipes, a net pumping head is achieved. Asymmetric pumping is regarded as one of the main mechanisms responsible for the Liebau effect in addition to impedance pumping. However, there remains a paucity of research surrounding the governing parameters of asymmetric pumping. Here, we conducted an experimental study of the performance of an asymmetric pump, with an aim to assess its potential for extravascular flow augmentation. A custom flexible latex tube and experimental platform were developed for this purpose. We tested various tube thicknesses and pinching frequencies. Our results demonstrate that the performance is within the range of physiological requirements for pediatric circulatory devices (~ 1 L/min and 
ISSN:2045-2322
2045-2322
DOI:10.1038/s41598-022-26524-0