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Dimensional complexity of neuromagnetic activity reduced during finger movement of greater difficulty.

机译:手指运动过程中神经磁活动的尺寸复杂性降低,难度更大。

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OBJECTIVE: We investigated the variation in dimensionality (D2) of neuromagnetic activity over the primary sensorimotor cortex (SM1) in healthy adults performing motor tasks of different difficulty. METHODS: Magnetoencephalography (MEG) was used to record neuromagnetic activity during self-paced, brisk unimanual finger extension at a rate of 1 and 2 Hz using the index finger of the dominant and non-dominant hands in 16 healthy subjects. Motor task difficulty was rated by the relative difference in time measurement between 1 and 2 Hz finger movements of both hands. The relative difference in dimensionality of SM1 activity was calculated by subtracting the D2 value in 2 Hz movement from that in 1 Hz one within subjects. RESULTS: Simple regression analyses show a significantly negative relationship between the relative dimensional complexity and the relative motor task difficulty in the contralateral SM1 for the left- (p<0.05), but not the right- (p=0.447) hand movement. CONCLUSIONS: The present data suggest that a motor task of greater difficulty may engender a reduction of simultaneously active quasi-independent neuronal generators in the contralateral SM1 underpinned by stronger neuronal connectivity of a relatively low dimensionality. SIGNIFICANCE: The decrease in dimensional complexity of MEG activity associated with a motor task of greater difficulty gives new insights to motor control strategy.
机译:目的:我们调查了健康成年人在执行不同难度的运动任务时,其初级感觉运动皮层(SM1)上神经磁活动的维数(D2)的变化。方法:使用脑磁图(MEG)记录了16名健康受试者的自发,快活的单手手指以1和2 Hz的频率自发活动的神经磁活动。通过在两只手的手指运动1和2 Hz之间的时间测量的相对差异来评估运动任务的难度。 SM1活动的维数相对差异是通过从受试者体内的1 Hz运动中减去2 Hz运动中的D2值来计算的。结果:简单的回归分析显示,对侧SM1的左手(p <0.05),但右手(p = 0.447)的相对尺寸复杂度和相对运动任务难度之间存在显着的负相关关系。结论:目前的数据表明,难度较大的运动任务可能导致对侧SM1中同时活动的拟独立神经元生成器的减少,这是由相对较低维度的较强神经元连接性所支持的。意义:与难度更大的运动任务相关的MEG活动的维度复杂性的降低为运动控制策略提供了新的见解。

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