arXiv:2607.07958cs.RO2026-07

软机器人手套同时缓解手部痉挛疼痛并提升活动能力。

Towards Soft Robotic Exogloves for Musculoskeletal Manipulation to Reduce Pain and Spasticity

论文配图:Towards Soft Robotic Exogloves for Musculoskeletal Manipulation to Reduce Pain and Spasticity
图 1 · 摘自论文原文
  • 采用个性化气动柔性执行器贴合手部结构,实现精准适配。
  • 在100~200kPa压力下优化设计,实测全接触与最大力分布。
  • 适合中风、关节炎等神经肌肉疾病患者康复使用。

全球有1200万人受手部痉挛及伴随疼痛困扰,包括中风幸存者、关节炎患者及其他肌肉神经功能障碍者。现有软机器人外手套可辅助运动或缓解疼痛,但尚无方案能兼顾二者。本文提出一种初步开发的软机器人外手套,既能辅助运动,又能通过类按摩压缩放松痉挛肌肉。手套包含根据个体手部拓扑与运动学定制的柔性气动执行器,确保最佳贴合性与靶向助力。新型柔性执行器经3D建模与有限元分析,在100~200 kPa压力下优化几何结构以降低应力。背侧指部执行器成功适配参与者手型,实现全接触与最大力分布;掌侧指部执行器可大幅压缩,适配痉挛过度屈曲的手指空间;掌面执行器通过光固化3D打印成功制备,展示出复杂几何结构的可行性。手套组装后由一名试点用户试穿,验证了舒适性与初步有效性。

原文摘要 · Abstract (English)

Hand spasticity and resulting pain affect 12 million people worldwide, including stroke survivors, arthritis patients, and those with other muscle and nerve deficiencies. Soft robotic exogloves are being introduced to help patients enhance mobility or manage pain; however, there are no current solutions that address both pain and mobility. We present preliminary development of a soft robotic exoglove that both aids in mobility and administers massage-like compression to relax spastic muscles. The glove consists of soft pneumatic actuators that are personalized to an individual's hand topology and kinematics, allowing for optimal conformability and targeted mobility. Novel soft actuators were designed, analyzed, fabricated, assembled into an exoglove, and experimentally tested. Actuators were 3D modeled and analyzed with finite element modeling under pressures of 100 and 200 kPa. Geometries were optimized to minimize stress before fabrication and testing. A dorsal finger actuator was successfully customized to a participant's hand topology, providing full conformal contact and maximal force distribution. A ventral finger actuator was successfully fabricated that can be drastically compressed in size to fit into the tight space of a hyperflexed spastic finger. A palmar actuator was successfully printed with stereolithography, showing potential for 3D-printed soft actuators with more complex geometries. The glove was assembled and successfully worn by a pilot user to validate initial findings in comfort and effectiveness.

软机器人康复手套痉挛管理

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