Geiger A W, Zarubin A, von Bally G, Scheld H H
Department of Thoracic and Cardiovascular Surgery, University of Münster, Germany.
Cardiovasc Surg. 1994 Feb;2(1):104-9.
At present there are many different prosthetic models available for heart valve replacement. Postimplant dysfunction resulting from material failure has been reported in several prostheses. The prime cause of these defects is hidden abnormalities in the valve construction or materials. In order to detect these defects before implantation, preoperative non-destructive testing of individual valves is proposed. For this purpose, holographic interferometry has been applied which is a non-contact, non-destructive, highly sensitive, three-dimensional measurement technique. Samples of different types of prosthetic heart valve, both mechanical and biological, were mounted in a specially developed test chamber with optical access from four sides. The valves were loaded with a static liquid pressure of 2.5-15 kPa. Deformations of the valves as a result of small pressure differences (0.5-15% of the static pressure) applied between two exposures were recorded by double-exposure holography. A fringe pattern superimposed on the image of the valve reconstructed from the hologram clearly indicates the presence of defects in the valve material.
目前有许多不同的人工心脏瓣膜模型可用于心脏瓣膜置换。在几种人工瓣膜中都报道了因材料故障导致的植入后功能障碍。这些缺陷的主要原因是瓣膜结构或材料中隐藏的异常情况。为了在植入前检测出这些缺陷,建议对单个瓣膜进行术前无损检测。为此,应用了全息干涉测量法,这是一种非接触、无损、高灵敏度的三维测量技术。不同类型的人工心脏瓣膜样本,包括机械瓣膜和生物瓣膜,被安装在一个专门开发的测试腔室中,该测试腔室从四个侧面都有光学通道。瓣膜承受2.5 - 15 kPa的静态液体压力。通过双曝光全息术记录在两次曝光之间施加的小压差(静态压力的0.5 - 15%)导致的瓣膜变形。叠加在从全息图重建的瓣膜图像上的条纹图案清楚地表明了瓣膜材料中存在缺陷。