一种评估拇指本体感觉的新型机器人技术预测中风后的手功能。

Luis Garcia-Fernandez, Andria Farrens, Raymond Rojas, Vicky Chan, Eric Wolbrecht, Joel C Perry, David J Reinkensmeyer
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引用次数: 0

摘要

拇指被称为“人类的标志”,然而,在中风康复中,很少有研究检查拇指的功能,甚至更少的研究专门关注拇指的感觉功能。在这里,我们描述了一种新的机器人技术来评估拇指本体感觉,并应用它来量化中风后拇指本体感觉与手功能之间的关系。“SomatoCircleJump”是一款基于视频游戏的游戏,参与者需要在机器人的驱动下,拇指绕着一个圆圈旋转,然后“跳”向屏幕上显示的径向目标。本体感觉能力以径向跳跃误差量化。我们评估了35名中风后慢性期患者,作为机器人手指训练的随机对照试验的一部分。与年龄匹配的对照组相比,中风患者的跳跃错误显著增加($\ mathm {p})
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Robotic Technique for Evaluating Thumb Proprioception Predicts Hand Function After Stroke.

The thumb has been called a "hallmark of humanity", and yet, in stroke rehabilitation, there are few studies that have examined thumb function and even fewer that have focused specifically on thumb sensory function. Here we describe a novel robotic technique to assess thumb proprioception and apply it to quantify the relationship between thumb proprioception and hand function after stroke. Based on a video game, "SomatoCircleJump" challenges participants to "jump" to radial targets presented on a screen as their thumb rotates around a circle, driven by a robot. Proprioceptive ability is quantified by radial jump error. We evaluated 35 individuals in the chronic phase post-stroke as part of a randomized controlled trial of robotic finger training. Compared to an agematched control group, people with stroke had significantly increased jump error ($\mathrm{p}<\text{0. 0 0 1}$). Thumb proprioception ability predicted hand function, as measured by the Box and Block Test score ($\rho=-0.44, \mathrm{p}=0.01$) and the Nine-Hole Peg Test time ($\rho= 0.49, \mathrm{p}=0.006$). Jump error was also correlated with an independent robotic measure of finger proprioception ($\rho=0.54, \mathrm{p}=0.003$). These results validate a novel robotic method to quantify thumb proprioception and indicate thumb proprioception deficits are common after stroke, co-occur with finger proprioception deficits, and relate to functional hand ability.

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