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评估上肢机器人外骨骼与表面肌电联合的经皮颈椎脊髓刺激的效果。

Assessing the Effect of Cervical Transcutaneous Spinal Stimulation With an Upper Limb Robotic Exoskeleton and Surface Electromyography.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2024;32:2883-2892. doi: 10.1109/TNSRE.2024.3436583. Epub 2024 Aug 14.

Abstract

Transcutaneous spinal stimulation (TSS) is a promising rehabilitative intervention to restore motor function and coordination for individuals with spinal cord injury (SCI). The effects of TSS are most commonly assessed by evaluating muscle response to stimulation using surface electromyography (sEMG). Given the increasing use of robotic devices to deliver therapy and the emerging potential of hybrid rehabilitation interventions that combine neuromodulation with robotic devices, there is an opportunity to leverage the on-board sensors of the robots to measure kinematic and torque changes of joints in the presence of stimulation. This paper explores the potential for robotic assessment of the effects of TSS delivered to the cervical spinal cord. We used a four degree-of-freedom exoskeleton to measure the torque response of upper limb (UL) joints during stimulation, while simultaneously recording sEMG. We analyzed joint torque and electromyography data generated during TSS delivered over individual sites of the cervical spinal cord in neurologically intact participants. We show that site-specific effects of TSS are manifested not only by modulation of the amplitude of spinally evoked motor potentials in UL muscles, but also by changes in torque generated by individual UL joints. We observed preferential resultant action of proximal muscles and joints with stimulation at the rostral site, and of proximal joints with rostral-lateral stimulation. Robotic assessment can be used to measure the effects of TSS, and could be integrated into complex control algorithms that govern the behavior of hybrid neuromodulation-robotic systems.

摘要

经皮脊髓刺激(TSS)是一种有前途的康复干预措施,可以恢复脊髓损伤(SCI)患者的运动功能和协调性。TSS 的效果通常通过使用表面肌电图(sEMG)评估刺激引起的肌肉反应来评估。鉴于越来越多地使用机器人设备来提供治疗,以及将神经调节与机器人设备相结合的混合康复干预措施的新兴潜力,有机会利用机器人的内置传感器来测量刺激存在时关节的运动学和扭矩变化。本文探讨了利用机器人评估 TSS 对颈脊髓影响的潜力。我们使用了一个四自由度的外骨骼来测量上肢(UL)关节在刺激期间的扭矩响应,同时记录 sEMG。我们分析了在神经完整参与者的颈脊髓的单个部位施加 TSS 时产生的关节扭矩和肌电图数据。我们表明,TSS 的特定部位效应不仅表现为 UL 肌肉中脊髓诱发运动电位幅度的调制,还表现为单个 UL 关节产生的扭矩变化。我们观察到在头侧部位刺激时近端肌肉和关节的优先合力作用,以及在头侧-外侧刺激时近端关节的优先合力作用。机器人评估可用于测量 TSS 的效果,并可集成到控制混合神经调节-机器人系统行为的复杂控制算法中。

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