The Hamlyn Centre, Imperial College London, London SW7 2AZ, UK.
Sensors (Basel). 2019 Apr 4;19(7):1616. doi: 10.3390/s19071616.
Wearable biomedical technology has gained much support lately as devices have become more affordable to the general public and they can easily interact with mobile phones and other platforms. The feasibility and accuracy of the data generated by these devices so as to replace the standard medical methods in use today is still under scrutiny. In this paper, we present an ear-worn device to measure cardiovascular and sweat parameters during physical exercise. ECG bipolar recordings capture the electric potential around both ears, whereas sweat rate is estimated by the impedance method over one segment of tissue closer to the left ear, complemented by the measurement of the lactate and pH levels using amperiometric and potentiometric sensors, respectively. Together with head acceleration, the acquired data is sent to a mobile phone via BLE, enabling extended periods of signal recording. Results obtained by the device have shown a SNR level of 18 dB for the ECG signal recorded around the ears, a THD value of -20.46 dB for the excitation signal involved in impedance measurements, sweat conductivity of 0.08 S/m at 1 kHz and sensitivities of 50 mV/pH and 0.8 μA/mM for the pH and lactate acquisition channels, respectively. Testing of the device was performed in human subjects during indoors cycling with characteristic level changes.
可穿戴式生物医学技术最近得到了广泛关注,因为这些设备对公众来说更加实惠,而且它们可以轻松地与手机和其他平台进行交互。这些设备所产生的数据的可行性和准确性,以便取代当今使用的标准医疗方法,仍在审查之中。在本文中,我们提出了一种可穿戴于耳部的设备,用于在运动期间测量心血管和汗液参数。ECG 双极记录捕捉双耳周围的电势,而汗液率则通过靠近左耳的组织的阻抗方法来估计,同时使用安培计和电位计传感器分别测量乳酸和 pH 值。与头部加速度一起,采集到的数据通过 BLE 发送到移动电话,从而实现了更长时间的信号记录。该设备获得的结果显示,耳周记录的 ECG 信号的 SNR 水平为 18 dB,阻抗测量中涉及的激励信号的 THD 值为-20.46 dB,汗液电导率在 1 kHz 时为 0.08 S/m,pH 和乳酸采集通道的灵敏度分别为 50 mV/pH 和 0.8 μA/mM。该设备在室内骑自行车的人体测试中进行了测试,期间特征电平发生了变化。