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陶瓷心脏瓣膜的研发。

Development of a ceramic heart valve.

作者信息

Mitamura Y, Hosooka K, Matsumoto T, Otaki K, Sakai K, Tanabe T, Yuta T, Mikami T

机构信息

Research Institute of Applied Electricity, Hokkaido University, Sapporo, Japan.

出版信息

J Biomater Appl. 1989 Jul;4(1):33-55. doi: 10.1177/088532828900400103.

Abstract

A durable and thromboresistant ceramic heart valve comprised of a single crystal alumina disk and titanium nitride (TiN) valve ring has been developed. Blood compatibility was examined by scanning electron microscopy (SEM) examinations of the valves implanted in sheep for 35 (#1), 26 (#2), 20 (#3), 23 (#4), and 26 (#5) days. The single crystal alumina and TiN surfaces were free of platelet aggregation or fibrin networks, except for some depositions of fibrin and platelets on the outflow TiN ring in #3, and isolated red cells on the outflow TiN ring in #5. Durability testing under high pressure (1750 mmHg = 233 KPa) pulsatile conditions showed that the safety factor of the ceramic valve was more than seven times greater than anticipated. The ceramic valve is promising as an artificial heart valve.

摘要

一种由单晶氧化铝圆盘和氮化钛(TiN)阀环组成的耐用且抗血栓的陶瓷心脏瓣膜已被研发出来。通过对植入绵羊体内35天(#1)、26天(#2)、20天(#3)、23天(#4)和26天(#5)的瓣膜进行扫描电子显微镜(SEM)检查来检测血液相容性。单晶氧化铝和TiN表面没有血小板聚集或纤维蛋白网络,除了#3号样本中流出道TiN环上有一些纤维蛋白和血小板沉积,以及#5号样本中流出道TiN环上有孤立的红细胞。在高压(1750 mmHg = 233 KPa)脉动条件下的耐久性测试表明,陶瓷瓣膜的安全系数比预期大七倍多。这种陶瓷瓣膜有望成为一种人工心脏瓣膜。

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