Department of Nanoengineering, University of California, San Diego, La Jolla, CA, USA.
Nat Biomed Eng. 2021 Jul;5(7):737-748. doi: 10.1038/s41551-021-00685-1. Epub 2021 Feb 15.
Monitoring the effects of daily activities on the physiological responses of the body calls for wearable devices that can simultaneously track metabolic and haemodynamic parameters. Here we describe a non-invasive skin-worn device for the simultaneous monitoring of blood pressure and heart rate via ultrasonic transducers and of multiple biomarkers via electrochemical sensors. We optimized the integrated device so that it provides mechanical resiliency and flexibility while conforming to curved skin surfaces, and to ensure reliable sensing of glucose in interstitial fluid and of lactate, caffeine and alcohol in sweat, without crosstalk between the individual sensors. In human volunteers, the device captured physiological effects of food intake and exercise, in particular the production of glucose after food digestion, the consumption of glucose via glycolysis, and increases in blood pressure and heart rate compensating for oxygen depletion and lactate generation. Continuous and simultaneous acoustic and electrochemical sensing via integrated wearable devices should enrich the understanding of the body's response to daily activities, and could facilitate the early prediction of abnormal physiological changes.
监测日常活动对身体生理反应的影响需要能够同时跟踪代谢和血液动力学参数的可穿戴设备。在这里,我们描述了一种非侵入性的皮肤佩戴设备,该设备通过超声换能器同时监测血压和心率,并通过电化学传感器监测多种生物标志物。我们对集成设备进行了优化,使其在贴合曲面皮肤的同时具有机械弹性和柔韧性,并确保可靠地感测间质液中的葡萄糖以及汗液中的乳酸、咖啡因和酒精,而各个传感器之间不会产生串扰。在人类志愿者中,该设备捕捉到了饮食和运动等生理效应,特别是食物消化后葡萄糖的产生、通过糖酵解消耗葡萄糖以及血压和心率的升高,以补偿耗氧量增加和乳酸生成。通过集成可穿戴设备进行连续和同时的声学和电化学传感,应该会丰富人们对身体对日常活动的反应的理解,并有助于早期预测异常的生理变化。