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Smart wireless headphone for cardiovascular and stress monitoring

机译:智能无线耳机,可监测心血管和压力

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Wearable technology has become ubiquitous in recent years due to the miniaturization of circuit electronics and advances in smart materials that can conform to the requirements posed by the human body, behaviour and experience. Sensors of this type are found attached almost to every body segment, capable of delivering signals even in harsh activity scenarios. The reliability and relevance of the physiological data retrieved by wearables have yet to surpass the conventional technologies in the healthcare system today. In this paper we present a small device incorporated inside an headphone set that continuously monitors the ECG, impedance and acceleration of the head. As opposed to most biometric sensors, ECG measurement relies on non-optical methods by capturing the electrical potential around the ear in both sides of the head, whereas impedance monitoring involves AC stimulation instead of DC, the latter commonly involved in skin galvanic response estimation. Signal processing of impedance parameters is performed in situ using a fast variant of the Discrete Fourier Transform in order to save computational resources and power expenditure from a microcontroller equipped with Bluetooth Low Energy. Applications that can benefit from this device include cardiovascular and stress level assessment of individuals for whom an hearable is a requirement for work or leisure.
机译:近年来,由于电路电子设备的小型化和智能材料的发展,可穿戴技术已变得无处不在,这些智能材料可以满足人体,行为和经验的要求。发现这种类型的传感器几乎附着在每个身体部位,即使在恶劣的活动情况下也能够传递信号。可穿戴设备检索到的生理数据的可靠性和相关性尚未超过当今医疗保健系统中的常规技术。在本文中,我们介绍了一种内置在耳机装置中的小型设备,该设备可以连续监控ECG,头部的阻抗和加速度。与大多数生物特征传感器相反,ECG测量依靠非光学方法来捕获头部两侧耳朵周围的电势,而阻抗监测涉及交流电刺激,而不是直流电,后者通常参与皮肤电流响应估计。使用离散傅立叶变换的快速变体在原位执行阻抗参数的信号处理,以节省配备有蓝牙低功耗功能的微控制器的计算资源和功耗。可以从该设备中受益的应用包括对个人的心血管和压力水平评估,对于他们来说,工作或休闲需要听得到的声音。

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