Wyckoff Elijah, Gombatto Sara P, Velazquez Yasmin, Godino Job, Patrick Kevin, Farcas Emilia, Loh Kenneth J
Active, Responsive, Multifunctional, and Ordered-materials Research (ARMOR) Laboratory, Department of Structural Engineering, University of California San Diego, La Jolla, CA 92093, USA.
Doctor of Physical Therapy Program, San Diego State University, San Diego, CA 92182, USA.
Sensors (Basel). 2025 Jun 17;25(12):3768. doi: 10.3390/s25123768.
Monitoring posture and movement accurately and efficiently is essential for both physical therapy and athletic training evaluation and interventions. Motion Tape (MT), a self-adhesive wearable skin-strain sensor made of piezoresistive graphene nanosheets (GNS), has demonstrated promise in capturing low back posture and movements. However, to address some of its limitations, this work explores alternative materials by replacing GNS with multi-walled carbon nanotubes (MWCNT). This study aimed to characterize the electromechanical properties of MWCNT-based MT. Cyclic load tests for different peak tensile strains ranging from 1% to 10% were performed on MWCNT-MT made with an aqueous ink of 2% MWCNT. Additional tests to examine load rate sensitivity and fatigue were also conducted. After characterizing the properties of MWCNT-MT, a human subject study with 10 participants was designed to test its ability to capture different postures and movements. Sets of six sensors were made from each material (GNS and MWCNT) and applied in pairs at three levels along each side of the lumbar spine. To record movement of the lower back, all participants performed forward flexion, left and right bending, and left and right rotation movements. The results showed that MWCNT-MT exceeded GNS-MT with respect to consistency of signal stability even when strain limits were surpassed. In addition, both types of MT could assess lower back movements.
准确而高效地监测姿势和运动对于物理治疗以及运动训练评估与干预都至关重要。运动胶带(MT)是一种由压阻式石墨烯纳米片(GNS)制成的自粘式可穿戴皮肤应变传感器,已在捕捉腰部姿势和运动方面展现出前景。然而,为了解决其一些局限性,本研究通过用多壁碳纳米管(MWCNT)替代GNS来探索替代材料。本研究旨在表征基于MWCNT的MT的机电性能。对由2% MWCNT水性墨水制成的MWCNT-MT进行了1%至10%不同峰值拉伸应变的循环载荷测试。还进行了其他测试以检查载荷率敏感性和疲劳性。在表征了MWCNT-MT的性能后,设计了一项有10名参与者的人体研究,以测试其捕捉不同姿势和运动的能力。每种材料(GNS和MWCNT)制作了六组传感器,并成对应用于腰椎两侧的三个水平位置。为了记录下背部的运动,所有参与者进行了前屈、左右弯曲以及左右旋转运动。结果表明,即使超过应变极限,MWCNT-MT在信号稳定性一致性方面也超过了GNS-MT。此外,两种类型的MT都能够评估下背部运动。