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Microelectromechanical system-based wireless microsystem for brain interfacing.

机译:基于微机电系统的用于大脑接口的无线微系统。

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摘要

This thesis presents the design, fabrication and characterization of a microelectromechanical system (MEMS) based complete wireless microsystem for brain interfacing, with very high quality factor and low power consumption. Components of the neuron sensing system include TiW fixed-fixed bridge resonator, MEMS oscillator based action-potential-to-RF module, and high-efficiency RF coil link for power and data transmissions.;First, TiW fixed-fixed bridge resonator on glass substrate was fabricated and characterized, with resonance frequency of 100 - 500 kHz, and a quality factor up to 2,000 inside 10 mT vacuum. The effect of surface conditions on resonator's quality factor was studied with 10s of nm Al2O 3 layer deposition with ALD (atomic layer deposition). It was found that MEMS resonator's quality factor decreased with increasing surface roughness.;Second, action-potential-to-RF module was realized with MEMS oscillator based on TiW bridge resonator. Oscillation signal with frequency of 442 kHz and phase noise of -84.75 dBc/Hz at 1 kHz offset was obtained. DC biasing of the MEMS oscillator was modulated with neural signal so that the output RF waveform carries the neural signal information.;Third, high-efficiency RF coil link for power and data communications was designed and realized. Based on the coupled mode theory (CMT), intermediate resonance coil was introduced and increased voltage transfer efficiency by up to 5 times.;Finally, a complete neural interfacing system was demonstrated with board-level integration. The system consists of both internal and external systems, with wireless powering, wireless data transfer, artificial neuron signal generation, neural signal modulation and demodulation, and computer interface displaying restored neuron signal.
机译:本文提出了一种基于微机电系统(MEMS)的完整无线微系统,用于人机交互,具有很高的品质因数和低功耗,其设计,制造和表征。神经元感测系统的组件包括TiW固定桥式谐振器,基于MEMS振荡器的动作电位至RF模块以及用于功率和数据传输的高效RF线圈链接;首先,玻璃上的TiW固定桥式谐振器制作并表征了这种基板,其共振频率为100-500 kHz,在10 mT真空中的品质因数高达2,000。利用ALD(原子层沉积)沉积了10s的Al2O 3层,研究了表面条件对谐振器品质因数的影响。结果表明,MEMS谐振器的品质因数随表面粗糙度的增加而降低。第二,利用基于TiW桥式谐振器的MEMS振荡器实现了动作电位至RF模块。在1 kHz偏移处获得了频率为442 kHz且相位噪声为-84.75 dBc / Hz的振荡信号。利用神经信号对MEMS振荡器的直流偏置进行调制,使输出的RF波形携带神经信号信息。第三,设计和实现了用于功率和数据通信的高效RF线圈链接。基于耦合模式理论(CMT),引入了中间谐振线圈,使电压传输效率提高了5倍。最后,展示了一个完整的神经接口系统,具有板级集成。该系统由内部和外部系统组成,具有无线供电,无线数据传输,人工神经元信号生成,神经信号调制和解调以及显示已还原神经元信号的计算机界面。

著录项

  • 作者

    Chen, Lingyao.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Engineering Electronics and Electrical.;Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:42

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