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Design of 3-D Magnetic Field Sensor and Calibration Platform for TMS

机译:TMS的3-D磁场传感器和校准平台设计

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In order to build an accurate measurement structure for transcranial magnetic stimulation (TMS) pre-testing, a kind of three - dimensional (3-D) magnetic field sensor and calibration platform are designed in this paper. This measurement structure is made up of 883-D magnetic field sensors. The 3-D magnetic field sensors based on Faraday law of electromagnetic induction are used to accurately measure pulsed magnetic fields generated by the stimulating coil. The coefficients of the sensors are calibrated in a designed 3-D calibration platform. And a series of experiments are carried out to verify the accuracy and stability of the sensors. The results from experiments indicate that the average measurement accuracy of 88 sensors is 1% and sensor performance is stable. In conclusion, this work provides a promising way to avoid direct human experiments and improve the security of TMS.
机译:为了建立一种精确的经颅磁刺激(TMS)预测试测量结构,设计了一种三维(3-D)磁场传感器和校准平台。该测量结构由883-D磁场传感器组成。基于电磁感应的法拉第定律的3-D磁场传感器用于精确测量由激励线圈产生的脉冲磁场。传感器的系数在设计的3-D校准平台中进行校准。并进行了一系列实验以验证传感器的准确性和稳定性。实验结果表明,88个传感器的平均测量精度为1%,传感器性能稳定。总之,这项工作为避免直接的人体实验和提高TMS的安全性提供了一种有希望的方法。

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