Raveh Eitan, Portnoy Sigal, Friedman Jason
Occupational Therapy Department, Sackler Faculty of Medicine, Tel Aviv University, Israel.
Physical Therapy Department, Sackler Faculty of Medicine, Tel Aviv University, Israel.
Hum Mov Sci. 2018 Apr;58:32-40. doi: 10.1016/j.humov.2018.01.008. Epub 2018 Jan 30.
We investigated whether adding vibrotactile feedback to a myoelectric-controlled hand, when visual feedback is disturbed, can improve performance during a functional test. For this purpose, able-bodied subjects, activating a myoelectric-controlled hand attached to their right hand performed the modified Box & Blocks test, grasping and manipulating wooden blocks over a partition. This was performed in 3 conditions, using a repeated-measures design: in full light, in a dark room where visual feedback was disturbed and no auditory feedback - one time with the addition of tactile feedback provided during object grasping and manipulation, and one time without any tactile feedback. The average time needed to transfer one block was measured, and an infrared camera was used to give information on the number of grasping errors during performance of the test. Our results show that when vibrotactile feedback was provided, performance time was reduced significantly, compared with when no vibrotactile feedback was available. Furthermore, the accuracy of grasping and manipulation was improved, reflected by significantly fewer errors during test performance. In conclusion, adding vibrotactile feedback to a myoelectric-controlled hand has positive effects on functional performance when visual feedback is disturbed. This may have applications to current myoelectric-controlled hands, as adding tactile feedback may help prosthesis users to improve their functional ability during daily life activities in different environments, particularly when limited visual feedback is available or desirable.
我们研究了在视觉反馈受到干扰时,给肌电控制手添加振动触觉反馈是否能在功能测试中提高表现。为此,健全受试者激活附着在其右手上的肌电控制手,进行改良的箱块测试,即在隔板上方抓取和操作木块。这在3种条件下进行,采用重复测量设计:在全光照下、在视觉反馈受到干扰且无听觉反馈的暗室中——一次在抓取和操作物体时添加触觉反馈,一次不添加任何触觉反馈。测量了转移一块木块所需的平均时间,并使用红外摄像机提供测试过程中抓取错误数量的信息。我们的结果表明,与不提供振动触觉反馈时相比,提供振动触觉反馈时,完成任务的时间显著减少。此外,抓取和操作的准确性得到提高,表现为测试过程中的错误显著减少。总之,当视觉反馈受到干扰时,给肌电控制手添加振动触觉反馈对功能表现有积极影响。这可能适用于当前的肌电控制手,因为添加触觉反馈可能有助于假肢使用者在不同环境中的日常生活活动中提高其功能能力,特别是在视觉反馈有限或需要时。