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The Role of Simulation in the Design of a Semi-Enclosed Tubular Embolus Retrieval

机译:模拟在半封闭管状栓塞取回设计中的作用

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摘要

A numerical analysis of a semi-enclosed tubular mechanical embolus retrieval device (MERD) for the treatment of acute ischemic stroke (AIS) is presented. In this research, the finite element analysis (FEA) methodology is used to evaluate mechanical performance and provide suggestions for optimizing the geometric design. A MERD fabricated from nickel–titanium alloy (Nitinol) tubing is simulated and analyzed under complex in vivo loading conditions involving shape-setting, crimping, deployment, and embolus retrieval. As a result, the peak strain of the shape-setting procedure is proved to be safe for the device pattern. However, the MERD shows poor mechanical behavior after crimping into a catheter, because the peak crimping strain obtains a value of 12.1%. The delivery and deployment step demonstrates that the artery wall has little risk of serious injuries or rupture. In addition, the process of simulation of embolus retrieval and device system migration inside the cerebral artery lumen provides useful information during the design process.
机译:提出了一种半封闭的管状机械栓塞修复装置(MERD)用于治疗急性缺血性卒中(AIS)的数值分析。在这项研究中,有限元分析(FEA)方法用于评估机械性能,并为优化几何设计提供建议。在复杂的体内载荷条件下,模拟和分析了由镍钛合金(Nitinol)管制成的MERD,包括定型,压接,展开和栓塞修复。结果,形状设定过程的峰值应变被证明对于器件图案是安全的。但是,MERD在压接到导管后显示出较差的机械性能,因为峰值压接应变的值为12.1%。输送和展开步骤表明,动脉壁受严重伤害或破裂的风险很小。另外,在设计过程中,栓塞恢复和装置系统在脑动脉腔内迁移的模拟过程提供了有用的信息。

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