npj Digital Medicine (Jan 2024)

Wireless facial biosensing system for monitoring facial palsy with flexible microneedle electrode arrays

  • Wenjianlong Zhou,
  • Zhongyan Wang,
  • Qin Xu,
  • Xiangxiang Liu,
  • Junshi Li,
  • Huaiqiang Yu,
  • Hui Qiao,
  • Lirui Yang,
  • Liangpeng Chen,
  • Yuan Zhang,
  • Zhe Huang,
  • Yuxing Pang,
  • Zhitong Zhang,
  • Jiayan Zhang,
  • Xiudong Guan,
  • Shunchang Ma,
  • Yingjie Ren,
  • Xiaoyi Shi,
  • Linhao Yuan,
  • Deling Li,
  • Dong Huang,
  • Zhihong Li,
  • Wang Jia

DOI
https://doi.org/10.1038/s41746-024-01002-1
Journal volume & issue
Vol. 7, no. 1
pp. 1 – 11

Abstract

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Abstract Facial palsy (FP) profoundly influences interpersonal communication and emotional expression, necessitating precise diagnostic and monitoring tools for optimal care. However, current electromyography (EMG) systems are limited by their bulky nature, complex setups, and dependence on skilled technicians. Here we report an innovative biosensing approach that utilizes a PEDOT:PSS-modified flexible microneedle electrode array (P-FMNEA) to overcome the limitations of existing EMG devices. Supple system-level mechanics ensure excellent conformality to the facial curvilinear regions, enabling the detection of targeted muscular ensemble movements for facial paralysis assessment. Moreover, our apparatus adeptly captures each electrical impulse in response to real-time direct nerve stimulation during neurosurgical procedures. The wireless conveyance of EMG signals to medical facilities via a server augments access to patient follow-up evaluation data, fostering prompt treatment suggestions and enabling the access of multiple facial EMG datasets during typical 6-month follow-ups. Furthermore, the device’s soft mechanics alleviate issues of spatial intricacy, diminish pain, and minimize soft tissue hematomas associated with traditional needle electrode positioning. This groundbreaking biosensing strategy has the potential to transform FP management by providing an efficient, user-friendly, and less invasive alternative to the prevailing EMG devices. This pioneering technology enables more informed decision-making in FP-management and therapeutic intervention.