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脑对使用传感器手假肢的反应。

Brain reactions to the use of sensorized hand prosthesis in amputees.

机构信息

Institute of Neurology, Fondazione Policlinico A. Gemelli-IRCCS, Roma, Italy.

Department of Neuroscience & Rehabilitation, IRCCS San Raffaele Pisana, Roma, Italy.

出版信息

Brain Behav. 2020 Nov;10(11):e01734. doi: 10.1002/brb3.1734. Epub 2020 Sep 19.

Abstract

OBJECTIVE

We investigated for the first time the presence of chronic changes in the functional organization of sensorimotor brain areas induced by prolonged training with a bidirectional hand prosthesis.

METHODS

A multimodal neurophysiological and neuroimaging evaluation of brain functional changes occurring during training in five consecutive amputees participating to experimental trials with robotic hands over a period of 10 years was carried out. In particular, modifications to the functional anatomy of sensorimotor brain areas under resting conditions were explored in order to check for eventual changes with respect to baseline.

RESULTS

Full evidence is provided to demonstrate brain functional changes, and some of them in both the hemispheres and others restricted to the hemisphere contralateral to the amputation/prosthetic hand.

CONCLUSIONS

The study describes a unique experimental experience showing that brain reactions to the prolonged use of an artificial hand can be tracked for a tailored approach to a fully embedded artificial upper limb for future chronic uses in daily activities.

摘要

目的

我们首次研究了长期使用双向手假肢训练引起的感觉运动脑区功能组织的慢性变化。

方法

对 5 名连续截肢者在 10 年期间使用机器人手进行实验试验期间的脑功能变化进行了多模态神经生理学和神经影像学评估。特别是,探索了静息状态下感觉运动脑区的功能解剖结构的变化,以检查相对于基线的潜在变化。

结果

充分证明了脑功能的变化,其中一些变化存在于两个半球,而另一些则仅限于与截肢/假肢手相对的对侧半球。

结论

该研究描述了一个独特的实验经验,表明可以跟踪大脑对长时间使用人工手的反应,以便为未来在日常活动中的长期使用量身定制完全嵌入式人工上肢。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/10f7/7667362/8baca22016b1/BRB3-10-e01734-g001.jpg

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