首页> 外文期刊>Journal of the Chinese Institute of Engineers. Series A >A MICROCONTROLLER-BASED IMPLANTABLE NEUROMUSCULAR STIMULATION SYSTEM WITH WIRELESS POWER AND DATA TRANSMISSION FOR ANIMAL EXPERIMENTS
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A MICROCONTROLLER-BASED IMPLANTABLE NEUROMUSCULAR STIMULATION SYSTEM WITH WIRELESS POWER AND DATA TRANSMISSION FOR ANIMAL EXPERIMENTS

机译:基于微控制器的无线功率和数据传输的可移植神经元刺激系统,用于动物实验

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摘要

The aim of this study is to develop an implantable microcontroller-based stimulation system with external wireless controller for data and power transmission. The system coupling efficiency can reach 35% in a reasonable range of distance via a self-oscillating class E transmitter with power transmission efficiency up to 90%. The implanted micro-stimulator is built on a double-layer printed circuit board, which is 3 cm in diameter, by using SMD components mostly. Its overall power consumption is around 30 mW. Our results indicate the regulated voltage can be maintained at a tractable range when the coupling distance is within 30 mm. Within this distance, lateral displacement of the implant is allowed as long as it is inside the area of the transmitting coil. Meanwhile, a wide range of stimulation patterns can be generated for nerve stimulation and blocking for animal experiments. All the functional blocks of a prototype implantable neuromuscular system have been successfully designed, implanted, and tested which is valuable for future ASIC design for a miniature implantable microstimulator.
机译:这项研究的目的是开发一种基于植入式微控制器的刺激系统,该系统具有用于数据和功率传输的外部无线控制器。通过自激E类发射器,系统耦合效率可以在合理的距离范围内达到35%,功率传输效率高达90%。植入的微刺激器主要通过使用SMD组件构建在直径3厘米的双层印刷电路板上。其总功耗约为30 mW。我们的结果表明,当耦合距离在30 mm以内时,可将调节电压维持在可控范围内。在此距离之内,只要植入物在发射线圈区域内,就允许其横向移位。同时,可以为神经刺激和动物实验产生广泛的刺激模式。原型可植入神经肌肉系统的所有功能模块均已成功设计,植入和测试,这对于微型可植入微型刺激器的未来ASIC设计具有重要意义。

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