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Electro-optic electrodes based on Lithium Niobate Mach Zhender Interferometer Modulators for wearable bioelectric activity recording

机译:基于铌酸锂马赫振德干涉仪调制器的电光电极,用于可穿戴生物电活动记录

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Wearable devices are used to record several physiological signals, providing unobtrusive and continuous monitoring. A main challenge in these systems is to develop new recording sensors, specially envisioning bioelectric activity detection. Available devices are difficult to integrate, mainly due to the amount of electrical wires and components needed. This work proposes a fiber-optic based device, which basis of operation relies on the electro-optic effect. A Lithium Niobate (LiBnO_3) Mach-Zehnder Interferometer (MZI) modulator is used as the core sensing component, followed by a signal conversion and processing stage. Tests were performed in order to validate the proposed acquisition system in terms of signal amplification and quality, stability and frequency response. A light source with a wavelength operation of 1530-1565 nm was used. The modulated intensity is amplified and converted to an output voltage with a high transimpedance gain. The filtering and electric amplification included a 50Hz notch filter, a bandpass filter with a -3 dB bandwidth from 0.50 to 35 Hz. The obtained system performance on key elements such as sensitivity, frequency content, and signal quality, have shown that the proposed acquisition system allows the development of new wearable bioelectric monitoring solutions based on optical technologies.
机译:可穿戴设备用于记录多个生理信号,提供不引人注目和连续的监控。这些系统中的主要挑战是开发新的记录传感器,特别设想生物电活动检测。可用的设备难以集成,主要原因是所需的电线和组件的量。这项工作提出了一种基于光纤的装置,其操作基础依赖于电光效应。使用铌酸锂(Libno_3)Mach-Zehnder干涉仪(MZI)调制器用作核心传感分量,然后是信号转换和处理阶段。在信号放大和质量,稳定性和频率响应方面进行测试以验证所提出的采购系统。使用具有1530-1565nm的波长操作的光源。调制强度被放大并转换为具有高跨阻抗增益的输出电压。过滤和电气放大包括一个50Hz的缺口滤波器,带通滤波器,带有-3 dB带宽的带通滤波器,从0.50到35 Hz。所获得的系统性能在诸如灵敏度,频率内容和信号质量的关键元件上,已经表明,所提出的采集系统允许基于光学技术开发新的可穿戴生物电监控解决方案。

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