School of Information Science and Technology, Fudan University, Shanghai 200433, China.
Huashan Hospital, Shanghai 200040, China.
Sensors (Basel). 2023 May 17;23(10):4818. doi: 10.3390/s23104818.
Real-time sweat monitoring is vital for athletes in order to reflect their physical conditions, quantify their exercise loads, and evaluate their training results. Therefore, a multi-modal sweat sensing system with a patch-relay-host topology was developed, which consisted of a wireless sensor patch, a wireless data relay, and a host controller. The wireless sensor patch can monitor the lactate, glucose, K, and Na concentrations in real-time. The data is forwarded via a wireless data relay through Near Field Communication (NFC) and Bluetooth Low Energy (BLE) technology and it is finally available on the host controller. Meanwhile, existing enzyme sensors in sweat-based wearable sports monitoring systems have limited sensitivities. To improve their sensitivities, this paper proposes a dual enzyme sensing optimization strategy and demonstrates Laser-Induced Graphene (LIG)-based sweat sensors decorated with Single-Walled Carbon Nanotubes (SWCNT). Manufacturing an entire LIG array takes less than one minute and costs about 0.11 yuan in materials, making it suitable for mass production. The in vitro test result showed sensitivities of 0.53 μA/mM and 3.9 μA/mM for lactate and glucose sensing, and 32.5 mV/decade and 33.2 mV/decade for K and Na sensing, respectively. To demonstrate the ability to characterize personal physical fitness, an ex vivo sweat analysis test was also performed. Overall, the high-sensitivity lactate enzyme sensor based on SWCNT/LIG can meet the requirements of sweat-based wearable sports monitoring systems.
实时汗液监测对于运动员至关重要,它可以反映运动员的身体状况、量化运动负荷并评估训练效果。因此,开发了一种具有贴片-中继-主机拓扑结构的多模态汗液感测系统,该系统由无线传感器贴片、无线数据中继器和主机控制器组成。无线传感器贴片可以实时监测乳酸、葡萄糖、K 和 Na 浓度。数据通过无线数据中继器通过近场通信 (NFC) 和蓝牙低能 (BLE) 技术转发,并最终在主机控制器上可用。同时,现有的汗液基可穿戴运动监测系统中的酶传感器灵敏度有限。为了提高其灵敏度,本文提出了一种双酶传感优化策略,并展示了基于激光诱导石墨烯 (LIG) 的汗液传感器,其表面修饰有单壁碳纳米管 (SWCNT)。制造整个 LIG 阵列所需的时间不到一分钟,材料成本约为 0.11 元,非常适合大规模生产。体外测试结果表明,乳酸和葡萄糖传感的灵敏度分别为 0.53 μA/mM 和 3.9 μA/mM,K 和 Na 传感的灵敏度分别为 32.5 mV/decade 和 33.2 mV/decade。为了证明其表征个人身体健康的能力,还进行了离体汗液分析测试。总体而言,基于 SWCNT/LIG 的高灵敏度乳酸酶传感器可以满足汗液基可穿戴运动监测系统的要求。