偏手活动中半球间的相互作用和障碍的原因:电生理证据

B. Ghosh, P. Swami, Tapan Gandhi, J. Santhosh, Sneh Anand
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引用次数: 1

摘要

根据身体部位的活动和人类生理的本质,脑间优势是神经科学中一个既确立又矛盾的概念。本研究的目的是比较左利手和右利手在初级感觉运动活动任务中脑电信号的各种参数和地形,并找出当一个人试图用另一只手完成通常由主臂完成的工作时阻碍的原因。左撇子和右撇子被要求写单词,这对两类人来说都是新的和新奇的。这些都是以一种记忆在任务执行过程中不起重要作用的方式来制定和呈现的。在两个实验阶段中,受试者被要求用每只手依次书写单词。用16通道电极记录脑电信号,并对其进行时域和频域分析。结果表明,在每次写作过程中,顶叶-颞叶以及额-中央区域的α和β能量显著减少。推测与感觉-运动任务相关的大脑结构在任务执行过程中发生失同步,并由于大脑两个半球的神经元耦合而产生阻碍效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interhemispheric interaction and cause of hindrance during handedness activity: An electro-physiological evidence
Interhemispheric dominance is an established yet paradoxical concept in neuroscience according to the activity of the body part and nature of the human physiology. The objective of the present study was to compare the various parameters and topography of EEG brain signals between left handed and right handed individuals during primary sensorimotor activity tasks and to find out the cause of hindrance, when a person tries to perform a job usually done by the dominant arm, with the other. Left and right handed normal individuals were asked to write words, which are new and novel to both the categories. These were formulated and presented in a manner such that memory does not play a significant role during the task execution. Subjects were instructed to write the words by using each hand successively in two experimental sessions. The EEG signals were recorded with 16-channel electrodes and were analyzed in time as well as frequency domain paradigm. Results indicate a significant reduction of alpha and beta power over parieto-temporal as well as fronto-central regions in each writing session. It is speculated that brain structures, which have been associated with sensory-motor task get desynchronized during the task execution and the hindrance effect is generated due to the neuronal coupling of both hemisphere in human brain.
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