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Hearables: feasibility of recording cardiac rhythms from head and in-ear locations

机译:可穿戴设备:从头部和耳内位置记录心律的可行性

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摘要

Mobile technologies for the recording of vital signs and neural signals are envisaged to underpin the operation of future health services. For practical purposes, unobtrusive devices are favoured, such as those embedded in a helmet or incorporated onto an earplug. However, these locations have so far been underexplored, as the comparably narrow neck impedes the propagation of vital signals from the torso to the head surface. To establish the principles behind electrocardiogram (ECG) recordings from head and ear locations, we first introduce a realistic three-dimensional biophysics model for the propagation of cardiac electric potentials to the head surface, which demonstrates the feasibility of head-ECG recordings. Next, the proposed biophysics propagation model is verified over comprehensive real-world experiments based on head- and in-ear-ECG measurements. It is shown both that the proposed model is an excellent match for the recordings, and that the quality of head- and ear-ECG is sufficient for a reliable identification of the timing and shape of the characteristic P-, Q-, R-, S- and T-waves within the cardiac cycle. This opens up a range of new possibilities in the identification and management of heart conditions, such as myocardial infarction and atrial fibrillation, based on 24/7 continuous in-ear measurements. The study therefore paves the way for the incorporation of the cardiac modality into future ‘hearables’, unobtrusive devices for health monitoring.
机译:设想了用于记录生命体征和神经信号的移动技术,以支持未来卫生服务的运作。出于实用目的,倾向于使用不显眼的设备,例如嵌入头盔中或合并到耳塞中的设备。然而,由于相对狭窄的颈部阻碍了生命信号从躯干到头部表面的传播,这些位置到目前为止尚未得到充分的开发。为了建立头部和耳朵位置的心电图(ECG)记录背后的原理,我们首先介绍了一个现实的三维生物物理模型,用于将心脏电势传播到头部表面,这证明了头部ECG记录的可行性。接下来,基于头部和入耳式ECG测量值,通过全面的实际实验对提出的生物物理传播模型进行了验证。结果表明,所提出的模型与录音非常匹配,并且头部和耳朵的ECG的质量足以可靠地识别特征P-,Q-,R-的时间和形状。心脏周期内的S波和T波。基于24/7连续入耳式测量,这为心脏病和心肌梗塞和房颤等心脏病的识别和管理开辟了一系列新的可能性。因此,这项研究为将心脏模式纳入未来的“可听者”,健康的监测设备铺平了道路。

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