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中风患者中利用虚幻动觉感觉增强本体感觉可改善主动上肢伸展和指物任务中的运动质量。

Proprioceptive Augmentation With Illusory Kinaesthetic Sensation in Stroke Patients Improves Movement Quality in an Active Upper Limb Reach-and-Point Task.

作者信息

Ferrari Francesca, Shell Courtney E, Thumser Zachary C, Clemente Francesco, Plow Ela B, Cipriani Christian, Marasco Paul D

机构信息

The BioRobotics Institute, Scuola Superiore Sant'Anna, Pisa, Italy.

Department of Excellence in Robotics & A.I., Scuola Superiore Sant'Anna, Pisa, Italy.

出版信息

Front Neurorobot. 2021 Mar 1;15:610673. doi: 10.3389/fnbot.2021.610673. eCollection 2021.

Abstract

Stroke patients often have difficulty completing motor tasks even after substantive rehabilitation. Poor recovery of motor function can often be linked to stroke-induced damage to motor pathways. However, stroke damage in pathways that impact effective integration of sensory feedback with motor control may represent an unappreciated obstacle to smooth motor coordination. In this study we investigated the effects of augmenting movement proprioception during a reaching task in six stroke patients as a proof of concept. We used a wearable neurorobotic proprioceptive feedback system to induce illusory kinaesthetic sensation by vibrating participants' upper arm muscles over active limb movements. Participants were instructed to extend their elbow to reach-and-point to targets of differing sizes at various distances, while illusion-inducing vibration (90 Hz), sham vibration (25 Hz), or no vibration was applied to the distal tendons of either their biceps brachii or their triceps brachii. To assess the impact of augmented kinaesthetic feedback on motor function we compared the results of vibrating the biceps or triceps during arm extension in the affected arm of stroke patients and able-bodied participants. We quantified performance across conditions and participants by tracking limb/hand kinematics with motion capture, and through Fitts' law analysis of reaching target acquisition. Kinematic analyses revealed that injecting 90 Hz illusory kinaesthetic sensation into the actively contracting (agonist) triceps muscle during reaching increased movement smoothness, movement directness, and elbow extension. Conversely, injecting 90 Hz illusory kinaesthetic sensation into the antagonistic biceps during reaching negatively impacted those same parameters. The Fitts' law analyses reflected similar effects with a trend toward increased throughput with triceps vibration during reaching. Across all analyses, able-bodied participants were largely unresponsive to illusory vibrational augmentation. These findings provide evidence that vibration-induced movement illusions delivered to the primary agonist muscle involved in active movement may be integrated into rehabilitative approaches to help promote functional motor recovery in stroke patients.

摘要

中风患者即使经过大量康复训练,通常仍难以完成运动任务。运动功能恢复不佳往往与中风引起的运动通路损伤有关。然而,影响感觉反馈与运动控制有效整合的通路中的中风损伤,可能是平稳运动协调未被重视的障碍。在本研究中,我们以概念验证的方式,调查了在六名中风患者的伸手任务中增强运动本体感觉的效果。我们使用了一种可穿戴神经机器人本体感觉反馈系统,通过在参与者主动肢体运动时振动其上臂肌肉来诱发虚幻的动觉感觉。参与者被指示伸展肘部,在不同距离指向不同大小的目标,同时对其肱二头肌或肱三头肌的远端肌腱施加诱发错觉的振动(90赫兹)、假振动(25赫兹)或不施加振动。为了评估增强的动觉反馈对运动功能的影响,我们比较了在中风患者和健全参与者的患侧手臂伸展过程中,振动肱二头肌或肱三头肌的结果。我们通过使用运动捕捉跟踪肢体/手部运动学,并通过对伸手目标获取的费茨定律分析,对不同条件和参与者的表现进行了量化。运动学分析表明,在伸手过程中向主动收缩的( agonist)肱三头肌注入90赫兹的虚幻动觉感觉,可提高运动的平滑度、运动的直接性和肘部伸展。相反,在伸手过程中向拮抗的肱二头肌注入90赫兹的虚幻动觉感觉,会对这些相同参数产生负面影响。费茨定律分析反映了类似的效果,伸手过程中肱三头肌振动时有吞吐量增加的趋势。在所有分析中,健全参与者对虚幻振动增强大多无反应。这些发现提供了证据,表明传递到主动运动中涉及的主要 agonist肌肉的振动诱发运动错觉,可能被整合到康复方法中,以帮助促进中风患者的功能性运动恢复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bb5/7956990/9e88efc289f1/fnbot-15-610673-g0001.jpg

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