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High speed photographic verification of intravascular stent strains during accelerated durability testing.

机译:加速耐久性测试期间血管内支架应变的高速照相验证。

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摘要

Most stent durability testing does not predict resulting clinical failures. Standards committees have taken on the task of generating more reliable test protocols. Currently, the AAMI/ISO Committee has chosen an experimental direction that allows an investigator to test at ultra high frequencies (above 1000 bpm) as long as the actual strain of the stents can be verified to be moving the same amount per cycle that they do during real time testing (70 to 72 bpm). We have developed a series of techniques and protocols utilizing high-speed photographic analysis to accomplish this. The first aspect requires the utilization of ultra clear silicone mock arteries. It is important that optical anomalies do not cause aberrations in the analysis. Next is the relationship between the angle of the incident lighting and the positioning of the camera in front of the pulsing tube. Finally, a unique set of marking techniques which are used as tracking locations for the automatic measurement systems located in the software of the camera have certain characteristics that are important with respect to accurate measurements. In each case the particular setup must have independent verification of the accuracy of the measurements. We will review these variables and demonstrate how this system can be utilized to verify strains of the inside wall, outside wall, and stent.
机译:大多数支架的耐用性测试不能预测最终的临床失败。标准委员会承担了生成更可靠的测试协议的任务。当前,AAMI / ISO委员会已经选择了一个实验方向,只要研究人员能够验证支架的实际应变在每个周期内移动的量与实验频率相同,研究人员就可以以超高频(1000 bpm以上)进行测试。在实时测试(70至72 bpm)中进行。我们已经开发了一系列利用高速摄影分析来实现这一目标的技术和协议。第一个方面要求利用超透明的硅氧烷模拟动脉。重要的是,光学异常不会导致分析中的像差。接下来是入射光的角度与摄像机在脉冲管前面的位置之间的关系。最后,用作位于相机软件中的自动测量系统的跟踪位置的一组独特的标记技术具有某些特征,这些特征对于精确测量而言非常重要。在每种情况下,特定的设置都必须对测量的准确性进行独立的验证。我们将回顾这些变量,并演示如何使用该系统来验证内壁,外壁和支架的应变。

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