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Reliable RF B/E-Field Probes for Time-Domain Monitoring of EM Exposure During Medical Device Testing

机译:可靠的RF B / E场探头,用于在医疗设备测试期间对EM暴露进行时域监控

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This paper presents electric and magnetic probes to measure radio frequency (RF) electric and magnetic fields for measuring the time-varying RF fields used in magnetic resonance imaging (MRI). A small single loop (2 cm) and short dipole antenna (2 cm) were developed to monitor the near field magnetic and electric exposure during the medical device testing. Theoretical analysis for each designed probe was performed to convert the real time receive signals to the exposed electric and magnetic field. Probes in this paper were tuned and matched at center frequency of 127.6 MHz for 3T MRI scanners to improve the accuracy and sensitivity. Different cables were designed to reduce the E-field pick up and achieving the most accurate measurement setup. Probes were fabricated on a single sided printed circuit board, FR4 of thickness 1.57 mm and a copper thickness of 35 μm. The measured S-parameters of the magnetic and electric field probes show less than -44 and -45 dB return loss at 127.6-MHz center frequency of the RF Birdcage.
机译:本文介绍了用于测量射频(RF)电磁场的电磁探头,以测量磁共振成像(MRI)中随时间变化的RF场。开发了一个小型单回路(2厘米)和短偶极子天线(2厘米),以监视医疗设备测试期间的近场磁场和电辐射。对每个设计的探头进行了理论分析,以将实时接收信号转换为暴露的电场和磁场。本文针对3T MRI扫描仪的探针进行了调校和匹配,使其中心频率为127.6 MHz,以提高准确性和灵敏度。设计了不同的电缆以减少电场拾取并实现最准确的测量设置。探针是在单面印刷电路板上制造的,FR4的厚度为1.57 mm,铜的厚度为35μm。在射频鸟笼的中心频率为127.6 MHz时,测得的磁场和电场探头的S参数显示出小于-44和-45 dB的回波损耗。

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