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September 24, 20250 citationsOpen Access

Stretchable and self-adhesive triboelectric sensor for real-time musculoskeletal monitoring and personalized recovery

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CLCai LinYDYunyi DingKLKai Lin

Key Points

  • The triboelectric sensor achieves a peak open-circuit voltage of 122V, enabling real-time monitoring of musculoskeletal activity.
  • Electrical performance includes a short-circuit current of 25μA and a transferred charge of 110nC over 40,000 cycles, highlighting its durability.
  • Designed from elastic bandages, the wearable technology conforms well to joint surfaces, enhancing its application in rehabilitation.
  • The flexible and self-adhesive nature allows for simple application and removal, making it beneficial for continuous patient monitoring.

Abstract

Recent advances in medical diagnostics have highlighted the importance of wearable technologies for continuous and real-time physiological monitoring. In this study, we introduce a flexible, self-powered triboelectric nanogenerator (MB-TENG) engineered from commercially available medical elastic bandages for biomechanical sensing during rehabilitation and gait analysis. Leveraging the porous and skin-friendly properties of the bandage combined with a PTFE film, the MB-TENG delivers robust electrical performance, achieving a peak open-circuit voltage (VOC) of 122~V, a short-circuit current (ISC) of 25~μA, and a transferred charge (QSC) of 110~nC, while maintaining long-term stability across 40, 000 mechanical cycles. Its inherent self-adhesive property allows for multi-layer assembly without extra bonding agents, and mechanical stretching enhances output, enabling dual configurability. A stacked design further improves the power capacity, supporting applications in wearable medical electronics. The MB-TENG device seamlessly conforms to joint surfaces and foot regions, providing accurate detection of motion states and abnormal gait patterns. These features underscore the MB-TENG's potential as a low-cost, scalable platform for personalized rehabilitation, injury monitoring, and early musculoskeletal diagnosis.

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Cite This Study

Lin et al. (2025) studied this question.

synapsesocial.com/papers/68d6e16f8b2b6861e4c400cahttps://doi.org/10.48550/arxiv.2508.11655
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Conductive elastomer-integrated triboelectric nanogenerator for self-powered motion sensing and injury warning2026
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  4. 4Self-Powered Wearable Pressure Sensor System for Smart Healthcare Applications2024 · 2 citations
  5. 5Electrospun self-powered triboelectric pressure sensor for lower-limb gait evaluation in tennis rehabilitation2026