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February 5, 2026Biomimetics2 citationsOpen Access

Review of Soft Robotic Gloves and Functional Electrical Stimulation Affecting Hand Function Rehabilitation for Stroke Patients

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XWXiaohui WangYFYilin FangZZZhaowei Zhang

Key Points

  • The aim is to review advancements in soft robotic gloves and functional electrical stimulation for improving hand function rehabilitation in stroke patients.
  • Systematic review of current technologies in hand rehabilitation, focusing on SRGs and FES.
  • Assessment of actuation strategies, intention sensing, and control algorithms across multiple systems.
  • Evaluation of user characteristics such as safety, comfort, and wearability in rehabilitation tools.
  • Soft robotic gloves improve hand rehabilitation outcomes due to their safety and lightweight design.
  • Functional electrical stimulation promotes muscle strength recovery and neural reorganization in stroke patients.
  • Identified key challenges include portability and user-friendliness of rehabilitation technologies.

Abstract

Stroke often results in impaired hand motor function, making effective hand rehabilitation essential for restoring activities of daily living (ADLs). Motor rehabilitation and neurorehabilitation are two major pathways to functional recovery. Rehabilitation gloves have proven to be effective tools for motor rehabilitation, and among them, soft robotic gloves (SRGs) have emerged as a research focus due to their lightweight design and inherent safety. Functional electrical stimulation (FES), which applies electrical currents to muscles and nerves, shows promise in promoting motor neural reorganization and restoring muscle strength in the hands of stroke survivors. The technologies applied to hand rehabilitation must possess the characteristics of safety, comfort, and practicality, while overcoming critical challenges such as portability, user-friendliness, and wearability. Motivated by the rehabilitation needs of post-stroke patients, this paper reviews recent advances in SRGs, FES, and hybrid hand rehabilitation systems (HHRSs) for hand rehabilitation, systematically examining progress in actuation strategies, intention sensing, and control algorithms across these three technologies. Furthermore, the limitations and technical challenges of current HHRSs are analyzed and four key future research directions are identified to pave the way for further development in this field.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/698433e9f1d9ada3c1fb1655https://doi.org/10.3390/biomimetics11020104
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