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Electric Field Probe for Time-Domain Monitoring of Radio Frequency Exposure During Development and Evaluation of MRI-Conditional Medical Devices at 3 T

机译:在3 T MRI专用医疗器械开发和评估过程中用于时域监测射频暴露的电场探头

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This paper presents the design and validation of a tuned time-domain electric field probe for mapping of radio frequency (RF) exposures used during testing of magnetic resonance imaging (MRI) conditional medical devices. The probes were 5 and 10 mm short dipole antenna, developed as a tradeoff between spatial resolution, linearity, and sensitivity. The probes were tuned and matched at a center frequency of 127.6 MHz, which corresponds to the RF frequency for 3T MRI scanners. To improve the accuracy and sensitivity, an RF low noise amplifier with high gain and very low noise figure was developed, followed by distributed lambda / 4 baluns along a triaxial cable to reduce the electric field pickup in the MRI environment. The probe was fabricated on a double-sided printed circuit board, FR4 thickness of 1.57 mm and a copper thickness of 35 mu m. Theoretical analysis was performed to calculate the exposed electric field from the real-time receive signals. To verify the probe performance finite-difference time-domain method simulations were compared to the actual measured electric fields. Developed probe was tested in a commercially available 3T RF exposure system to determine the probe dynamic range and linearity.
机译:本文介绍了一种调谐时域电场探头的设计和验证,该探头可用于在磁共振成像(MRI)条件医疗设备的测试过程中使用的射频(RF)曝光图。探针是5毫米和10毫米的短偶极天线,是在空间分辨率,线性度和灵敏度之间进行权衡的结果。调整并匹配探针的中心频率为127.6 MHz,该频率对应于3T MRI扫描仪的RF频率。为了提高精度和灵敏度,开发了具有高增益和极低噪声系数的RF低噪声放大器,然后沿三轴电缆分配了λ/ 4巴伦,以减少MRI环境中的电场拾取。探针是在双面印刷电路板上制成的,FR4厚度为1.57 mm,铜厚度为35μm。进行了理论分析,以从实时接收信号中计算出暴露的电场。为了验证探针性能,将有限差分时域方法仿真与实际测得的电场进行了比较。在市售的3T RF曝光系统中测试了开发的探头,以确定探头的动态范围和线性度。

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