A custom-built single-channel in-ear electroencephalography sensor for sleep phase detection: an interdependent solution for at-home sleep studies.

IF 3.4 3区 医学 Q2 CLINICAL NEUROLOGY
Daniel Filipe Borges, Joana Isabel Soares, Heloísa Silva, João Felgueiras, Carla Batista, Simão Ferreira, Nuno Barbosa Rocha, Alberto Leal
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Abstract

Sleep is vital for health. It has regenerative and protective functions. Its disruption reduces the quality of life and increases susceptibility to disease. During sleep, there is a cyclicity of distinct phases that are studied for clinical purposes using polysomnography (PSG), a costly and technically demanding method that compromises the quality of natural sleep. The search for simpler devices for recording biological signals at home addresses some of these issues. We have reworked a single-channel in-ear electroencephalography (EEG) sensor grounded to a commercially available memory foam earplug with conductive tape. A total of 14 healthy volunteers underwent a full night of simultaneous PSG, in-ear EEG and actigraphy recordings. We analysed the performance of the methods in terms of sleep metrics and staging. In another group of 14 patients evaluated for sleep-related pathologies, PSG and in-ear EEG were recorded simultaneously, the latter in two different configurations (with and without a contralateral reference on the scalp). In both groups, the in-ear EEG sensor showed a strong correlation, agreement and reliability with the 'gold standard' of PSG and thus supported accurate sleep classification, which is not feasible with actigraphy. Single-channel in-ear EEG offers compelling prospects for simplifying sleep parameterisation in both healthy individuals and clinical patients and paves the way for reliable assessments in a broader range of clinical situations, namely by integrating Level 3 polysomnography devices. In addition, addressing the recognised overestimation of the apnea-hypopnea index, due to the lack of an EEG signal, and the sparse information on sleep metrics could prove fundamental for optimised clinical decision making.

用于睡眠阶段检测的定制单通道耳内脑电图传感器:用于家庭睡眠研究的相互依存解决方案。
睡眠对健康至关重要。它具有再生和保护功能。破坏睡眠会降低生活质量,增加患病几率。在睡眠过程中,有一个周期性的不同阶段,临床上使用多导睡眠图(PSG)对其进行研究,这种方法成本高、技术要求高,会影响自然睡眠的质量。为了解决这些问题,我们正在寻找更简单的家用生物信号记录设备。我们重新设计了一种单通道耳内脑电图(EEG)传感器,用导电胶带将其接地到市售的记忆泡沫耳塞上。共有 14 名健康志愿者接受了一整夜的同步 PSG、耳内脑电图和行动计记录。我们分析了这些方法在睡眠指标和分期方面的性能。在另一组 14 名接受睡眠相关病症评估的患者中,我们同时记录了 PSG 和耳内脑电图,后者有两种不同的配置(头皮上有和没有对侧参照物)。在这两组患者中,耳内脑电图传感器与 PSG "黄金标准 "显示出很强的相关性、一致性和可靠性,从而支持准确的睡眠分类,而这是动图无法做到的。单通道耳内脑电图为简化健康人和临床患者的睡眠参数提供了令人信服的前景,并为在更广泛的临床情况下进行可靠的评估铺平了道路,即通过集成三级多导睡眠监测设备。此外,由于缺乏脑电信号,呼吸暂停-低通气指数被高估,睡眠指标信息稀少,解决这些问题对于优化临床决策至关重要。
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来源期刊
Journal of Sleep Research
Journal of Sleep Research 医学-临床神经学
CiteScore
9.00
自引率
6.80%
发文量
234
审稿时长
6-12 weeks
期刊介绍: The Journal of Sleep Research is dedicated to basic and clinical sleep research. The Journal publishes original research papers and invited reviews in all areas of sleep research (including biological rhythms). The Journal aims to promote the exchange of ideas between basic and clinical sleep researchers coming from a wide range of backgrounds and disciplines. The Journal will achieve this by publishing papers which use multidisciplinary and novel approaches to answer important questions about sleep, as well as its disorders and the treatment thereof.
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