The feasibility and utility of wearable 24-h multimodality neuromonitoring during daily activities are demonstrated. We have developed a fourth-generation ambulatory near infrared spectroscopy device, namely NINscan 4. NINscan 4 enables recording of brain function (via cerebral hemodynamics), systemic hemodynamics, electrocardiography, and actigraphy simultaneously and continuously for up to 24 h at 250-Hz sampling rate, during (and with minor restriction to) daily activities. We present initial 24-h human subject test results, with example analysis including (1) comparison of cerebral perfusion and oxygenation changes during wakefulness and sleep over a 24-h period and (2) capturing of hemodynamic changes prior, during and after sudden waken up in the night during sleep. These results demonstrate the first ambulatory 24-h cerebral and systemic hemodynamics monitoring, and its unique advantages including long-term data collection and analysis capability, ability to catch unpredictable transient events during activities of daily living, as well as coregistered multimodality analysis capabilities. These results also demonstrate that NINscan 4's motion artifact at 1-g head movement is smaller than physiological hemodynamic fluctuations during motionless sleep. The broader potential of this technology is also discussed.

译文

证明了日常活动中可穿戴24小时多模态神经监测的可行性和实用性。我们开发了第四代动态近红外光谱装置,即NINscan 4。NINscan 4能够在日常活动期间 (并对其进行少量限制) 以250Hz采样率同时记录脑功能 (通过脑血流动力学),全身血流动力学,心电图和动态描记术长达24小时。我们提供了最初的24小时人体受试者测试结果,并进行了实例分析,包括 (1) 在24小时内清醒和睡眠期间脑灌注和氧合变化的比较,以及 (2) 在睡眠中突然醒来之前,期间和之后捕获血液动力学变化。这些结果证明了首次动态24小时脑和全身血流动力学监测,其独特的优势包括长期数据收集和分析能力,在日常生活活动中捕捉不可预测的短暂事件的能力,以及共同注册的多模态分析能力。这些结果还表明,NINscan 4在1-g头部运动时的运动伪影小于静止睡眠期间的生理血液动力学波动。还讨论了该技术的更广泛潜力。

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