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Energy efficient heart rate sensing using a painted electrode ECG wearable

机译:使用涂漆电极ECG可穿戴的节能心率感应

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Many countries are facing burdens on their health care systems due to ageing populations. A promising strategy to address the problem is to allow selected people to remain in their homes and be monitored using recent advances in wearable devices, saving in-hospital resources. With respect to heart monitoring, wearable devices to date have principally used optical techniques by shining light through the skin. However, these techniques are severely hampered by motion artifacts and are limited to heart rate detection. Further, these optical devices consume a large amount of power in order to receive a sufficient signal, resulting in the need for frequent battery recharging. To address these shortcomings we present a new wrist ECG wearable that is similar to the clinical approach for heart monitoring. Our device weighs less than 30 g, and is ultra low power, extending the battery lifetime to over a month to make the device more appropriate for in-home health care applications. The device uses two electrodes activated by the user to measure the voltage across the wrists. The electrodes are made from a flexible ink and can be painted on to the device casing, making it adaptable for different shapes and users. In this paper we show how the ECG sensor can be integrated into an existing IoT wearable and compare the device's accuracy against other common commercial devices.
机译:由于老龄化人口,许多国家面临着对他们的医疗保健系统负担。解决问题的有希望的策略是让选定的人留在他们的家中,并在佩戴设备上的最新进展中监控,节省医院资源。关于心脏监测,迄今为止的可穿戴设备主要通过闪光通过皮肤来使用光学技术。然而,通过运动伪影严重阻碍了这些技术,并且限于心率检测。此外,这些光学器件消耗大量功率以便接收足够的信号,从而需要频繁电池充电。为了解决这些缺点,我们提出了一种新的手腕ECG可穿戴,类似于心脏监测的临床方法。我们的设备重量小于30克,是超低功耗,将电池寿命延长到一个月内,使设备更适合家庭医疗保健应用。该设备使用用户激活的两个电极来测量手腕上的电压。电极由柔性墨水制成,并且可以涂在装置壳体上,使其适用于不同的形状和用户。在本文中,我们展示了ECG传感器如何集成到现有的IOT可穿戴中,并比较设备对其他常用商业设备的准确性。

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