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Finite Element Method Guided Measurement of Temperature Profile in Tissue Exposed to a Transcutaneous Energy Transfer System

机译:有限元方法引导温度曲线在暴露于经皮能转移系统的组织中的测量

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Transcutaneous energy transfer (TET) systems are attractive alternatives to traditional percutaneous drive lines for delivery power to ventricular assist devices. As with all active implantable medical devices heat is dissipated during the operation of a TET system, which may cause tissue damage. For the safety of the patient standards restrict the temperature rise to be below 43 °C for external components and 39 °C for implanted components. The aim of this study is to analyze the temperature profile of the tissue when exposed to a TET system. In this paper three-dimensional finite element method (FEM) is used to address the limitations in instrumentation by determining the temperature profile and identifying the peak values and locations of the TET system. The results of this study show that the peak temperatures of the TET system are within the safety limits and the points of peak temperatures are highlighted to guide the instrumentation of in vivo experiments.
机译:经皮能量转移(TET)系统是传统经皮驱动线的有吸引力的替代方案,用于向心室辅助装置输送电力。与所有有效的植入医疗设备一样,在TET系统的操作期间,热量耗散,这可能导致组织损伤。对于患者标准的安全限制,将温度升高低于43℃,对于外部组分和39℃的植入部件。本研究的目的是在暴露于TET系统时分析组织的温度曲线。本文通过确定温度曲线并识别TET系统的峰值和位置来解决三维有限元方法(FEM)来解决仪器中的限制。本研究结果表明,TET系统的峰值温度在安全限制内,突出了峰值温度点以指导体内实验的仪器。

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