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Design and optimization of mm-size implantable and wearable on-body antennas for biomedical systems

机译:用于生物医学系统的毫米尺寸可植入和可穿戴式人体天线的设计和优化

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Battery-free cortical implants enable data telemetry in wireless brain-machine interface systems (BMI). In this paper, we analyze the power transfer in a wireless link from a wearable on-body transmit antenna to a miniature 2×2×2-mm3 implant antenna. For the first time, we assess the feasibility of using electro-textiles in the realization of the wearable on-body BMI reader antenna. Simulations using a 4-layered spherical head model predicted −20 dB and −23 dB link power efficiencies in a wireless link from a wearable copper fabric and an embroidered reader loops, respectively, to a 2×2×2-mm3 implant loop. This performance is comparable to that achieved with a bulk copper transmit antenna. Measurements of the fabricated prototypes using Human-Head Equivalent Liquid matched with the expected results thus confirming the applicability of the transmitting antennas made of electro-textiles.
机译:无需电池的皮质植入物可实现无线脑机接口系统(BMI)中的数据遥测。在本文中,我们分析了从可穿戴式人体发射天线到微型2×2×2-mm3植入天线的无线链路中的功率传输。我们首次评估了在实现可穿戴式人体BMI阅读器天线中使用电子纺织品的可行性。使用4层球头模型进行的仿真预测,从可穿戴铜织物和绣花读取器环路到2×2×2-mm3植入物环路的无线链路中,链路功率效率分别为−20 dB和−23 dB。该性能可与大容量铜发射天线实现的性能相媲美。使用人头等效液体对制造的原型进行的测量与预期结果相匹配,从而确认了由电子织物制成的发射天线的适用性。

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