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一种采用耳塞式外形的无线 EEG 采集和处理系统,具有 600 小时的电池续航时间。

A Wireless System for EEG Acquisition and Processing in an Earbud Form Factor with 600 Hours Battery Lifetime.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2022 Jul;2022:3139-3145. doi: 10.1109/EMBC48229.2022.9871874.

Abstract

In recent years, in-ear electroencephalography (EEG) was demonstrated to record signals of similar quality compared to standard scalp-based EEG, and clinical applications of objective hearing threshold estimations have been reported. Existing devices, however, still lack important features. In fact, most of the available solutions are based on wet electrodes, require to be connected to external acquisition platforms, or do not offer on-board processing capabilities. Here we overcome all these limitations, presenting an ear-EEG system based on dry electrodes that includes all the acquisition, processing, and connectivity electronics directly in the ear bud. The earpiece is equipped with an ultra-low power analog front-end for analog-to-digital conversion, a low-power MEMS microphone, a low-power inertial measurement unit, and an ARM Cortex-M4 based microcontroller enabling on-board processing and Bluetooth Low Energy connectivity. The system can stream raw EEG data or perform data processing directly in-ear. We test the device by analysing its capability to detect brain response to external auditory stimuli, achieving 4 and 1.3 mW power consumption for data streaming or on board processing, respectively. The latter allows for 600 hours operation on a PR44 zinc-air battery. To the best of our knowledge, this is the first wireless and fully self-contained ear-EEG system performing on-board processing, all embedded in a single earbud. Clinical relevance- The proposed ear-EEG system can be employed for diagnostic tasks such as objective hearing threshold estimations, outside of clinical settings, thereby enabling it as a point-of-care solution. The long battery lifetime is also suitable for a continuous monitoring scenario.

摘要

近年来,经证实,入耳式脑电图 (EEG) 可记录到与基于标准头皮 EEG 质量相当的信号,并且已经有关于客观听力阈值估计的临床应用的报道。然而,现有设备仍缺乏一些重要功能。事实上,大多数可用的解决方案都基于湿电极,需要连接到外部采集平台,或者不提供板载处理能力。在这里,我们克服了所有这些限制,提出了一种基于干电极的耳 EEG 系统,该系统包括所有采集、处理和连接电子设备都直接集成在耳塞中。耳塞配备了超低功耗模拟前端用于模数转换、低功耗 MEMS 麦克风、低功耗惯性测量单元和基于 ARM Cortex-M4 的微控制器,支持板载处理和蓝牙低能耗连接。该系统可以直接在耳内流式传输原始 EEG 数据或进行数据处理。我们通过分析该设备检测到外部听觉刺激的大脑反应的能力来测试该设备,分别实现了 4mW 和 1.3mW 的数据流或板载处理功耗。后者可在 PR44 锌空气电池上运行 600 小时。据我们所知,这是第一款无线且完全独立的耳 EEG 系统,可进行板载处理,所有这些都嵌入在单个耳塞中。临床相关性- 所提出的耳 EEG 系统可用于诊断任务,例如客观听力阈值估计,在临床环境之外进行,从而使其成为一种即时护理解决方案。长电池寿命也适合连续监测场景。

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