Li Yue, Wei Yuan, Yang Yabao, Zheng Lu, Luo Lei, Gao Jiuwei, Jiang Hanjun, Song Juncai, Xu Manzhang, Wang Xuewen, Huang Wei
Frontiers Science Center for Flexible Electronics (FSCFE) and Institute of Flexible Electronics (IFE), Northwestern Polytechnical University, Xi'an, 710072, China.
MIIT Key Laboratory of Flexible Electronics (KLoFE), Northwestern Polytechnical University, Xi'an, 710072, China.
Research (Wash D C). 2022 Dec 15;2022:0002. doi: 10.34133/research.0002. eCollection 2022.
Flexible and wearable pressure sensors attached to human skin are effective and convenient in accurate and real-time tracking of various physiological signals for disease diagnosis and health assessment. Conventional flexible pressure sensors are constructed using compressible dielectric or conductive layers, which are electrically sensitive to external mechanical stimulation. However, saturated deformation under large compression significantly restrains the detection range and sensitivity of such sensors. Here, we report a novel type of flexible pressure sensor to overcome the compression saturation of the sensing layer by soft-strain effect, enabling an ultra-high sensitivity of ~636 kPa and a wide detection range from 0.1 kPa to 56 kPa. In addition, the cyclic loading-unloading test reveals the excellent stability of the sensor, which maintains its signal detection after 10,000 cycles of 10 kPa compression. The sensor is capable of monitoring arterial pulse waves from both deep tissue and distal parts, such as digital arteries and dorsal pedal arteries, which can be used for blood pressure estimation by pulse transit time at the same artery branch.
附着在人体皮肤上的柔性可穿戴压力传感器,在准确实时跟踪各种生理信号以进行疾病诊断和健康评估方面既有效又方便。传统的柔性压力传感器是使用可压缩的介电层或导电层构建的,这些层对外部机械刺激具有电敏感性。然而,在大压缩下的饱和变形显著限制了此类传感器的检测范围和灵敏度。在此,我们报告了一种新型柔性压力传感器,通过软应变效应克服传感层的压缩饱和,实现了约636 kPa的超高灵敏度和从0.1 kPa到56 kPa的宽检测范围。此外,循环加载-卸载测试揭示了该传感器的出色稳定性,在10 kPa压缩10000次循环后仍能保持信号检测。该传感器能够监测来自深部组织和远端部位(如指动脉和足背动脉)的动脉脉搏波,可用于通过同一动脉分支处的脉搏传输时间来估计血压。