首页> 外文期刊>IEEE Transactions on Biomedical Engineering >A CMOS integrated circuit for multichannel multiple-subject biotelemetry using bidirectional optical transmissions [weightlessness in space effects application]
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A CMOS integrated circuit for multichannel multiple-subject biotelemetry using bidirectional optical transmissions [weightlessness in space effects application]

机译:使用双向光传输的多通道多主体生物遥测CMOS集成电路[空间效应应用中的失重]

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摘要

A CMOS integrated circuit for a noninvasive biological-signal telemetry system specified for use in medical and physiological studies of the influence of weightlessness in space is presented. The system can monitor multichannel (4 channels maximum) biological signals from multiple subjects (4 subjects maximum) in real time by using time multiplexing. A key technique so-called synchronized multiple-subject telemetry, to achieve multiple-subject telemetry has been proposed. This technique utilizes bidirectional optical transmissions with direct and scattered infrared lights between an observer and each of the subjects. An experimental CMOS IC to give a small light-weight low-power, and smart telemetry instrument for use on animals has been developed. This IC is for evaluating circuit blocks of the implantable monolithic telemetry instrument. The major circuit blocks include CMOS digital circuits for synchronization, subject selection and time multiplexing, analog circuits for pulse interval modulation, and other blocks such as a CMOS optical pulse receiver and an LED driver. A preliminary experimental multichannel telemetry from two subjects has been performed with the implemented IC chips, and the principal operation of the multiple-subject optical biotelemetry has been demonstrated.
机译:提出了一种用于无创生物信号遥测系统的CMOS集成电路,该集成电路专门用于空间失重影响的医学和生理研究。该系统可以使用时分复用实时监视来自多个对象(最多4个对象)的多通道(最多4个通道)生物信号。已经提出了实现多对象遥测的关键技术,即所谓的同步多对象遥测。该技术利用双向光学传输,在观察者和每个对象之间具有直接和散射的红外光。已经开发出一种实验性CMOS IC,可提供一种轻巧,低功耗的智能遥测仪器,用于动物身上。该IC用于评估可植入式单片遥测仪器的电路块。主要电路模块包括用于同步,对象选择和时间复用的CMOS数字电路,用于脉冲间隔调制的模拟电路以及其他模块,例如CMOS光脉冲接收器和LED驱动器。已实施的IC芯片已完成了两个对象的初步实验性多通道遥测,并且已证明了多对象光学生物遥测的主要操作。

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