预测即将发生的事件发生在周围的空间的手。

IF 3.1 4区 医学 Q2 Medicine Neural Plasticity Pub Date : 2021-02-20 eCollection Date: 2021-01-01 DOI:10.1155/2021/6649135
Maria L Rangel, Lidiane Souza, Erika C Rodrigues, José M Oliveira, Michelle F Miranda, Antonio Galves, Claudia D Vargas
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引用次数: 5

摘要

预测即将到来的感觉运动事件意味着创造对身体和周围世界的预估。这种能力是熟练运动行为的一个基本方面,需要对身体和环境进行准确和不断更新的表征。为了检验这些预测机制是否会受到外周损伤的影响,我们采用动作观察和脑电图(EEG)范式来评估健康和臂丛损伤(BPI)参与者对观察到的感觉运动事件的预测标记的发生。9名健康受试者和6名BPI患者观看了一系列视频片段,从自我中心的角度展示了演员的手和一个彩色球。球的颜色表示手是否会抓住它(手的运动),或者球会滚向手并触摸它(球的运动),或者没有任何事件发生(没有运动)。在健康参与者中,我们期望找到不同的脑电图激活模式(EEG特征),具体到预测每种情况的发生。从放置在对照组感觉运动皮层上的电极记录的脑电图信号的聚类分析表明,预测即将到来的手部运动或触觉事件的发生都会产生特定的神经特征。在BPI实验中,手运动条件下对侧优势手感觉运动皮层的脑电图信号与其他条件下不同。此外,在优势手对侧的感觉运动皮层中,球运动和无运动条件没有差异,这表明BPI特别模糊了优势手预测即将到来的触觉事件的能力。这些结果强调了感觉运动皮层在创造对身体周围空间的动作和触觉相互作用的估计方面的作用,并提出了外周感觉运动丧失后预测编码的可塑性效应。
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Predicting Upcoming Events Occurring in the Space Surrounding the Hand.

Predicting upcoming sensorimotor events means creating forward estimates of the body and the surrounding world. This ability is a fundamental aspect of skilled motor behavior and requires an accurate and constantly updated representation of the body and the environment. To test whether these prediction mechanisms could be affected by a peripheral injury, we employed an action observation and electroencephalogram (EEG) paradigm to assess the occurrence of prediction markers in anticipation of observed sensorimotor events in healthy and brachial plexus injury (BPI) participants. Nine healthy subjects and six BPI patients watched a series of video clips showing an actor's hand and a colored ball in an egocentric perspective. The color of the ball indicated whether the hand would grasp it (hand movement), or the ball would roll toward the hand and touch it (ball movement), or no event would occur (no movement). In healthy participants, we expected to find distinct electroencephalographic activation patterns (EEG signatures) specific to the prediction of the occurrence of each of these situations. Cluster analysis from EEG signals recorded from electrodes placed over the sensorimotor cortex of control participants showed that predicting either an upcoming hand movement or the occurrence of a tactile event yielded specific neural signatures. In BPI participants, the EEG signals from the sensorimotor cortex contralateral to the dominant hand in the hand movement condition were different compared to the other conditions. Furthermore, there were no differences between ball movement and no movement conditions in the sensorimotor cortex contralateral to the dominant hand, suggesting that BPI blurred specifically the ability to predict upcoming tactile events for the dominant hand. These results highlight the role of the sensorimotor cortex in creating estimates of both actions and tactile interactions in the space around the body and suggest plastic effects on prediction coding following peripheral sensorimotor loss.

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来源期刊
Neural Plasticity
Neural Plasticity Neuroscience-Neurology
CiteScore
5.70
自引率
0.00%
发文量
0
审稿时长
1 months
期刊介绍: Neural Plasticity is an international, interdisciplinary journal dedicated to the publication of articles related to all aspects of neural plasticity, with special emphasis on its functional significance as reflected in behavior and in psychopathology. Neural Plasticity publishes research and review articles from the entire range of relevant disciplines, including basic neuroscience, behavioral neuroscience, cognitive neuroscience, biological psychology, and biological psychiatry.
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