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离心式血泵中泵壳表面粗糙度的溶血效应。

Hemolytic effects of surface roughness of a pump housing in a centrifugal blood pump.

作者信息

Takami Y, Nakazawa T, Makinouchi K, Glueck J, Benkowski R, Nosé Y

机构信息

Department of Surgery, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

Artif Organs. 1997 May;21(5):428-32.

PMID:9129778
Abstract

The surface roughness of artificial blood contacting devices is an important surface property that is closely related to blood cell trauma. The present study investigated the effect of the surface roughness of a pump housing on hemolysis in an impeller-type centrifugal blood pump, a pivot bearing supported Gyro C1E3 pump. The purpose of the study was to determine which part of a housing has the greatest surface roughness effect on hemolysis in a centrifugal pump. Seven Gyro C1E3 pumps were prepared, each with a smooth surface impeller and a housing with differing areas of altered surface roughness. Both top and bottom housings were divided into half subregions, each with the same area. Seven test pumps were produced by subjecting various subregions of the housings to vapor polishing and sandblasting. The treated surfaces were then examined by a surface profile instrument. Using these 7 pumps with different areas of altered housing roughness, in vitro hemolysis tests were performed simulating cardiopulmonary bypass (5 L/min, 350 mm Hg). The results of this study are as follows. First, the surface roughness of the top housing had a greater effect on hemolysis than that of the bottom housing. Second, on the surface of the top housing, the surface roughness of the outer half area had a greater effect on hemolysis than that of the inner half area. Third, on the surface of the bottom housing, the surface roughness of the inner half area had a greater effect on hemolysis than that of the outer half area. These findings concur with previous studies of flow patterns in pumps. Thus, it is expected that the method in this study, comparative in vitro hemolysis tests of the pumps with surfaces of the same roughness but different locations, can be used to detect the high shear area inside a pump.

摘要

人工血液接触装置的表面粗糙度是一项重要的表面特性,与血细胞损伤密切相关。本研究调查了泵壳表面粗糙度对叶轮式离心血泵(枢轴轴承支撑的Gyro C1E3泵)溶血的影响。该研究的目的是确定泵壳的哪一部分对离心泵中的溶血具有最大的表面粗糙度影响。制备了七台Gyro C1E3泵,每台泵都有一个光滑表面的叶轮和一个表面粗糙度改变区域不同的泵壳。顶部和底部泵壳均被分成面积相同的半区域。通过对泵壳的各个子区域进行蒸汽抛光和喷砂处理,制作了七台测试泵。然后用表面轮廓仪检查处理过的表面。使用这七台泵壳粗糙度改变区域不同的泵,模拟体外循环(5升/分钟,350毫米汞柱)进行体外溶血试验。本研究结果如下。第一,顶部泵壳的表面粗糙度对溶血的影响大于底部泵壳。第二,在顶部泵壳表面,外半区域的表面粗糙度对溶血的影响大于内半区域。第三,在底部泵壳表面,内半区域的表面粗糙度对溶血的影响大于外半区域。这些发现与之前关于泵内流型的研究一致。因此,预计本研究中采用的方法,即对具有相同粗糙度但不同位置表面的泵进行体外溶血对比试验,可用于检测泵内的高剪切区域。

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