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微型轴流泵开发中的考虑因素与问题

Considerations and problems in the development of the mini-spindle pump.

作者信息

Hager J, Koller J, Gschnitzer F, Fitz A, Klima G, Brandstaetter F

机构信息

Surgical Clinic I, University of Innsbruck, Austria.

出版信息

Artif Organs. 1995 Jul;19(7):660-4. doi: 10.1111/j.1525-1594.1995.tb02398.x.

DOI:10.1111/j.1525-1594.1995.tb02398.x
PMID:8572969
Abstract

The premise for the development of the mini-spindle pump, planned as an implantable device for assisted circulation, was to transport 4 L of water/min in mock circulation with a speed of 12-15,000 rpm against an afterload of 90 mm Hg. After calculations, the resulting first prototype had a spindle rotor with 3 threads (outer diameter, 18 mm; inner diameter, 6.2 mm; length, 45 mm) in a U-shaped housing, driven by an electric motor with a cooling system. In mock circulation, this pump moved 7.8 L of water/min at 18,000 rpm. To avoid animal experiments, its influence on the blood was tested in a Maxima oxygenator. The device circulated 4.2 L of blood/min with the same speed. Because of its high traumatic hemolysis rate (> 250 mg% of free hemoglobin after 7 h of pumping), the rotor was modified, first without effect at 2.5 threads and then at 4 threads. In addition, in this third prototype, the flow direction was reversed. This prototype was more effective (4.3 L of blood/min at 12,000 rpm in the oxygenator) and the hemolysis rate, after a pumping duration of 8 h, could only be reduced to 180 mg% of free hemoglobin. As a result, a fourth prototype was developed (i.e., the U-shape of the housing was abandoned). This device functioned better than the third prototype (4.5 L of blood/min at 12,000 rpm in the oxygenator), but the blood trauma increased (220 mg% of free hemoglobin after 7 h of pumping).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

微型轴流泵计划作为一种用于辅助循环的可植入设备,其研发前提是在模拟循环中以12000 - 15000转/分钟的速度输送4升水/分钟,对抗90毫米汞柱的后负荷。经过计算,首个原型机的轴流转子有3个螺纹(外径18毫米,内径6.2毫米,长度45毫米),置于U形外壳中,由带冷却系统的电动马达驱动。在模拟循环中,该泵在18000转/分钟时可输送7.8升水/分钟。为避免动物实验,在Maxima氧合器中测试其对血液的影响。该设备以相同速度可循环4.2升血液/分钟。由于其创伤性溶血率高(泵送7小时后游离血红蛋白>250毫克%),转子进行了改进,先是2.5个螺纹时无效,然后改为4个螺纹。此外,在第三个原型机中,流动方向被反转。这个原型机更有效(在氧合器中12000转/分钟时为4.3升血液/分钟),泵送8小时后的溶血率仅降至游离血红蛋白的180毫克%。结果,开发了第四个原型机(即放弃了外壳的U形)。该设备比第三个原型机运行得更好(在氧合器中12000转/分钟时为4.5升血液/分钟),但血液创伤增加(泵送7小时后游离血红蛋白为220毫克%)。(摘要截断于250字)

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