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Laser Doppler technique for non-destructive evaluation of mechanical heart valves kinematics

机译:激光多普勒技术对机械心脏瓣膜运动学的无损评估

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Laser techniques for vibration measurement, due to their non-contact nature, represents an interesting alternative investigational tool to be tested in biomedical and clinic fields. A particular application could be as evaluation method in design and quality control of artificial organs. Aim of this study is to investigate the application of laser vibrometry to the study of mechanical heart valves in-vitro, with an ad hoc set-up. A heterodyne laser Doppler vibrometry system, which allows the measurement of both vibrational velocity and displacement was used. Three different approaches have been carried out, in order to stress the limits of the laser vibrometry technique for testing heart valve prostheses. Critical points and difficulties to build up experimental studies in this field were clearly pointed out. In the present study only one laser head was used, the aim of the authors being to test the feasibility of a simplified approach on mechanical cardiac valves. Starting from that analysis a comparison could be made to assess the capability to discriminate between normal and malfunctioning devices. The advantage of the proposed test bench is that it could provide a non-contact, non-destructive analysis of the valve under the same working conditions as those upon implantation. The proposed method could furnish a typical "fingerprint" characterizing each valve behaviour in repeatable experimental conditions.
机译:由于其非接触性质,用于振动测量的激光技术代表了一种有趣的替代研究工具,将在生物医学和临床领域进行测试。特定的应用可以作为评估方法在人造器官的设计和质量控制中。这项研究的目的是通过临时设置研究激光振动测定法在体外机械心脏瓣膜研究中的应用。使用允许测量振动速度和位移的外差激光多普勒振动测定系统。为了强调用于测试心脏瓣膜假体的激光振动测定技术的局限性,已经执行了三种不同的方法。明确指出了建立该领域实验研究的关键点和困难。在本研究中,仅使用了一个激光头,作者的目的是测试机械心脏瓣膜简化方法的可行性。从该分析开始,可以进行比较以评估区分正常设备和故障设备的能力。所提出的试验台的优点在于,它可以在与植入时相同的工作条件下提供对瓣膜的非接触,非破坏性分析。所提出的方法可以提供典型的“指纹”,以表征在可重复的实验条件下每个阀门的行为。

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