Barron D, Harbottle S, Hoenich N A, Morley A R, Appleton D, McCabe J F
Artif Organs. 1986 Jun;10(3):226-35. doi: 10.1111/j.1525-1594.1986.tb02551.x.
The repeated flexion and compression of pump segments by the rollers of peristaltic pumps results in cracking and abrasion of the inner surfaces of the pump segment, leading to shedding of particles into the extracorporeal circuit. A series of studies to assess the rate of particle release from silicone rubber, polyvinyl chloride (PVC), and Pivipol, a coextruded polyurethane-coated PVC tubing, when these materials were used with blood pumps of the type found in hemodialysis units, was undertaken. The studies show that with all tubing/pump combinations there is an overall increase in the total number of particles released, but an analysis of the particle size distribution indicates that the majority of the particles are less than 16 micron in diameter. The rate of increase may be reduced, however, by decreasing the occlusion pressure.
蠕动泵的滚轮对泵管段的反复弯曲和挤压会导致泵管段内表面出现裂纹和磨损,从而使颗粒脱落到体外循环中。开展了一系列研究,以评估当硅橡胶、聚氯乙烯(PVC)和一种共挤聚氨酯涂层PVC管材Pivipol与血液透析单元中使用的那种类型的血泵一起使用时,这些材料的颗粒释放速率。研究表明,对于所有管材/泵的组合,释放的颗粒总数总体上都会增加,但对颗粒尺寸分布的分析表明,大多数颗粒的直径小于16微米。然而,通过降低阻塞压力,可以降低增加的速率。