Arm training in Multiple Sclerosis using Phantom: Clinical relevance of robotic outcome measures

P. Feys, B. O. Eijnde, K. Coninx, Joan De Boeck, Feys Peter, Alders Geert, Gijbels Domien, De Boeck, De Weyer Tom, Coninx Karin, Raymaekers Chris, Truyens Veronik, Groenen Patric, Meijer Kenneth, Savelberg Hans, Eijnde O Bert
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引用次数: 31

Abstract

Upper limb weakness due to Multiple Sclerosis has a major negative effect on the functional activities of the patient. Promising developments in the field of rehabilitation robotics may enable additional exercise. This study aims to investigate which types of robotic outcome measures are clinically relevant, in preparation of the evaluation for intervention studies.Within this context, appropriate movement tasks and tests for the haptic PHANTOM end-effector robot were designed in a virtual environment. These tasks focused on spatial accuracy, object manipulation and speed. Outcome measures were: 1) virtual movement tests, recorded by the robot to quantify motor control; 2) clinical outcome measures such as the Motricity Index, Jamar and MicroFET hand-held dynamometer to evaluate muscle strength; and the Nine Hole Peg Test, Purdue Pegboard, ARAt and TEMPA to asses upper limb function and manual dexterity.10 healthy controls performed the virtual movement tasks using the Phantom as interface. 21 MS subjects with upper limb dysfunction caused by muscle weakness were included in an interventional training study. Pearson correlations were calculated at baseline between the performance on the three virtual movement tasks and the clinical tests on impairment and activity level. The virtual movement tests discriminated between healthy controls and MS patients with hand dysfunction. In the MS patient group, no significant correlations were found between muscle strength tests and virtual movement tasks, while mainly significant correlations were found between specific functional measures (specifically ARAt and Purdue pegboard test) and virtual movement tasks.
使用Phantom进行多发性硬化症的手臂训练:机器人结果测量的临床相关性
多发性硬化症引起的上肢无力对患者的功能活动有很大的负面影响。康复机器人领域有希望的发展可能使额外的锻炼成为可能。本研究旨在研究哪些类型的机器人结果测量与临床相关,为干预研究的评估做准备。在此背景下,在虚拟环境中为触觉PHANTOM末端执行器机器人设计了适当的运动任务和测试。这些任务侧重于空间精度、对象操作和速度。结果测量为:1)虚拟运动测试,由机器人记录以量化运动控制;2)临床结果测量,如运动指数,Jamar和MicroFET手持式测功仪评估肌肉力量;以及九孔钉测试、普渡钉板、ARAt和TEMPA来评估上肢功能和手灵巧性。10个健康控件使用Phantom作为界面执行虚拟运动任务。21例由肌肉无力引起上肢功能障碍的MS患者被纳入一项介入训练研究。在三个虚拟运动任务的表现与损伤和活动水平的临床测试之间的基线上计算Pearson相关性。虚拟运动测试区分健康对照和MS患者的手功能障碍。在MS患者组中,肌肉力量测试与虚拟运动任务之间未发现显著相关性,而特定功能测量(特别是ARAt和Purdue钉板测试)与虚拟运动任务之间主要存在显著相关性。
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