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Photrodes~(TM) for physiological sensing

机译:用于生理感应的Photrodes〜(TM)

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This paper describes a paradigm shift in the technology for sensing electro-physiological signals. In recent years, SRICO has been developing small lithium niobate photonic electrodes, otherwise called "Photrodes~(TM)" for measuring EEG and ECG signals. These extrinsic fiber-optic sensing devices exploit the extremely high electrical input impedance of Mach-Zehnder Intensity (MZI) electro-optic modulators to detect microvolt and millivolt physiological signals. Voltage levels associated with electrocardiograms are typically on the order of several millivolts, and such signals can be detected by capacitive pickup through clothing, i.e., the Photrode~(TM) may be used in a non-contact mode. Electroencephalogram signals, which typically have an amplitude of several microvolts, require direct contact with the skin. However, this contact may be dry, eliminating the need for conductive gels. The electrical bandwidth of this photonic electrode system stretches from below 0.1 Hz to many tens of kHz and is constrained mainly by the signal processing electronics, not by the Photrode~(TM) itself. The paper will describe the design and performance of Photrode™ systems and the challenging aspects of this new technology.
机译:本文描述了用于感测电生理信号的技术的范式转变。近年来,SRICO已开发出小的铌酸锂光子电极,也称为“ Photrodes〜(TM)”,用于测量EEG和ECG信号。这些外部光纤传感设备利用Mach-Zehnder Intensity(MZI)电光调制器的极高电输入阻抗来检测微伏和毫伏生理信号。与心电图相关的电压电平通常在几毫伏的数量级,并且这种信号可以通过衣服的电容性拾取来检测,即,Photrode TM可以在非接触模式下使用。脑电波信号通常具有几微伏的振幅,需要直接与皮肤接触。但是,这种接触可能是干燥的,从而无需导电胶。该光子电极系统的电带宽从0.1 Hz以下延伸到数十kHz,并且主要受信号处理电子设备的约束,而不是受PhotrodeTM本身的约束。本文将描述Photrode™系统的设计和性能以及这项新技术的挑战性方面。

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