In vitro flow characteristics of a new pump with a high inherent sensitivity to venous return.

ASAIO transactions Pub Date : 1991-10-01
J Liska, S Lundbäck, B K Semb
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Abstract

A new type of pump, the differential displacement pump, has recently been developed. The new pump and a conventional pneumatic displacement pump were evaluated with respect to pump flow, filling pressures, stroke frequency, and inflow pattern under equivalent test conditions. The pumps were connected via inlet and outlet cannulas to a Donovan hydraulic circulation analogue. The differential displacement pump showed a high sensitivity to filling pressure in the range of 2.3-9.6 L/min/mmHg, and a high efficiency as long as the stroke volume was submaximal. The inflow was continuous and pulsatile with a maximal forward flow velocity during systole as long as the maximal stroke volume was not employed. In contrast, the conventional displacement pump showed low sensitivity to filling pressures, a discontinuous inflow, with a maximal inlet cannula forward flow during diastole and a substantial flow reversal during systole. These results indicate that the differential displacement pump is a better concept with respect to sensitivity to venous return, and that it provides an inflow pattern and regulation of pump flow similar to that of the biologic heart.

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一种对静脉回流具有高固有敏感性的新型泵的体外流动特性。
最近研制出了一种新型泵——差排量泵。在等效试验条件下,对新型泵和传统气动置换泵的泵流量、充注压力、冲程频率和流入模式进行了评估。泵通过进出口套管连接到多诺万液压循环模拟装置。差排量泵在2.3 ~ 9.6 L/min/mmHg充注压力范围内具有较高的敏感性,且在冲程小于最大的情况下效率较高。在不使用最大冲程容积的情况下,心脏收缩期的流入是连续的、有脉动的,并具有最大的正向流速。相比之下,传统的置换泵对填充压力的敏感性较低,流入不连续,舒张期最大的进口套管正向流动,收缩期大量的流量反转。这些结果表明,就静脉回流的敏感性而言,差排量泵是一个更好的概念,它提供了一种类似于生物心脏的流入模式和泵流量调节。
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