Duan Haiyang, Zhang Yilong, Zhang Yitao, Zhu Pengcheng, Mao Yanchao
Key Laboratory of Materials Physics of Ministry of Education, School of Physics, Zhengzhou University, Zhengzhou 450001, China.
Nanomaterials (Basel). 2024 Aug 27;14(17):1398. doi: 10.3390/nano14171398.
Electrophysiological monitoring is a commonly used medical procedure designed to capture the electrical signals generated by the body and promptly identify any abnormal health conditions. Wearable sensors are of great significance in signal acquisition for electrophysiological monitoring. Traditional electrophysiological monitoring devices are often bulky and have many complex accessories and thus, are only suitable for limited application scenarios. Hydrogels optimized based on nanomaterials are lightweight with excellent stretchable and electrical properties, solving the problem of high-quality signal acquisition for wearable sensors. Therefore, the development of hydrogels based on nanomaterials brings tremendous potential for wearable physiological signal monitoring sensors. This review first introduces the latest advancement of hydrogels made from different nanomaterials, such as nanocarbon materials, nanometal materials, and two-dimensional transition metal compounds, in physiological signal monitoring sensors. Second, the versatile properties of these stretchable composite hydrogel sensors are reviewed. Then, their applications in various electrophysiological signal monitoring, such as electrocardiogram monitoring, electromyographic signal analysis, and electroencephalogram monitoring, are discussed. Finally, the current application status and future development prospects of nanomaterial-optimized hydrogels in wearable physiological signal monitoring sensors are summarized. We hope this review will inspire future development of wearable electrophysiological signal monitoring sensors using nanomaterial-based hydrogels.
电生理监测是一种常用的医疗程序,旨在捕捉人体产生的电信号并及时识别任何异常健康状况。可穿戴传感器在电生理监测的信号采集方面具有重要意义。传统的电生理监测设备通常体积庞大且有许多复杂的附件,因此仅适用于有限的应用场景。基于纳米材料优化的水凝胶重量轻,具有出色的可拉伸性和电学性能,解决了可穿戴传感器高质量信号采集的问题。因此,基于纳米材料的水凝胶的发展为可穿戴生理信号监测传感器带来了巨大潜力。本文综述首先介绍了由不同纳米材料(如纳米碳材料、纳米金属材料和二维过渡金属化合物)制成的水凝胶在生理信号监测传感器方面的最新进展。其次,综述了这些可拉伸复合水凝胶传感器的多功能特性。然后,讨论了它们在各种电生理信号监测中的应用,如心电图监测、肌电信号分析和脑电图监测。最后,总结了纳米材料优化的水凝胶在可穿戴生理信号监测传感器中的当前应用现状和未来发展前景。我们希望这篇综述能激发未来使用基于纳米材料的水凝胶的可穿戴电生理信号监测传感器的发展。