The Development of a Novel Peristaltic Test Stand “Swallow-Sim” for the Mechanical Evaluation of Esophageal Stents

Daniel Berger, Jan T. Sehrt, Thomas Brinkmann, Niclas Norman Henrichs, Oguzhan Bilec, Karl-Hermann Fuchs, Alexander Meining
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Abstract

Development of medical products begins with the “in silico” phase, where the development and simulation of new stent types is carried out. This is followed by the “in vitro” phase. Here, tests are done in a test stand to obtain initial conclusions about the interaction of the environment. The approval process is completed in the “in vivo” phase, where testing in living beings happen. Here, preclinical studies are carried out in animals first, followed by clinical studies on patients. A big part of the development fails in this final phase, as this is where the interactions of all influences from the stent environment are investigated. Since this not only causes high costs for the developers, but also unnecessarily destroys living resources in animal studies, this publication describes the development of a test stand called "SwallowSim" that superimposes the mechanical influences of the esophagus, the chemical stress caused by hydrochloric acid and increased body temperature. Furthermore, tests of the acting pressures are carried out using esophageal manometry, a temperature test of the test stand and a test run of the gastric juice. At the end of this publication, the results are evaluated with a six-week test of a Nickel Titanium Naval Ordnance Laboratory stent, which loses much of its mechanical properties and is partially destroyed by the load. The results show a clear correlation with the findings from reality. The test stand should be further optimised and examined in more detail in further tests and subjected to a reality check.
开发新型蠕动试验台 "Swallow-Sim",用于食管支架的机械评估
医疗产品的开发始于 "硅学 "阶段,即开发和模拟新型支架。随后是 "体外 "阶段。在此阶段,将在试验台上进行测试,以获得有关环境相互作用的初步结论。审批过程在 "体内 "阶段完成,即在活人体内进行测试。在这一阶段,首先在动物身上进行临床前研究,然后在病人身上进行临床研究。研发工作的很大一部分都失败在这一最后阶段,因为在这一阶段要研究支架环境中所有影响因素的相互作用。本出版物介绍了一种名为 "SwallowSim "的试验台的开发情况,该试验台可叠加食道的机械影响、盐酸引起的化学应力和体温升高。此外,还使用食道测压法对作用压力进行了测试,并对试验台进行了温度测试和胃液测试。在本出版物的末尾,对镍钛海军军械实验室支架进行了为期六周的测试,对测试结果进行了评估。结果显示与实际结果有明显的相关性。试验台应进一步优化,在进一步试验中进行更详细的检查,并接受实际检验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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