[Research on Construction of Test Environment for Assessment of RF-Induced Heating Effects of Implants].

Yonghua Li, Lingfeng Lu, Jing Wang, Chengling Li, Pengfei Yang, Zhichao Wang, Dajing Wu, Xun Liu, Sheng Hu
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Abstract

In magnetic resonance examination, the interaction between implants and the radio frequency (RF) fields induces heating in human tissue and may cause tissue damage. To assess the RF-induced heating of implants, three steps should be executed, including electromagnetic model construction, electromagnetic model validation, and virtual human body simulations. The crucial step of assessing RF-induced heating involves the construction of a test environment for electromagnetic model validation. In this study, a hardware environment, comprised of a RF generation system, electromagnetic field measurement system, and a robotic arm positioning system, was established. Furthermore, an automated control software environment was developed using a Python-based software development platform to enable the creation of a high-precision automated integrated test environment. The results indicate that the electric field generated in this test environment aligns well with the simulated electric field, making it suitable for assessing the RF-induced heating effects of implants.

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[构建用于评估植入物射频感应加热效应的测试环境的研究]。
在磁共振检查中,植入物与射频(RF)场之间的相互作用会导致人体组织发热,并可能造成组织损伤。要评估射频引起的植入物发热,需要执行三个步骤,包括电磁模型构建、电磁模型验证和虚拟人体模拟。评估射频诱导发热的关键步骤是构建电磁模型验证的测试环境。本研究建立了一个由射频发生系统、电磁场测量系统和机械臂定位系统组成的硬件环境。此外,还利用基于 Python 的软件开发平台开发了一个自动化控制软件环境,以创建一个高精度的自动化综合测试环境。结果表明,该测试环境中产生的电场与模拟电场非常吻合,因此适用于评估射频引起的植入物加热效应。
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来源期刊
中国医疗器械杂志
中国医疗器械杂志 Medicine-Medicine (all)
CiteScore
0.40
自引率
0.00%
发文量
8086
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