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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Decoupling the cortical power spectrum reveals real-time representation of individual finger movements in humans.
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Decoupling the cortical power spectrum reveals real-time representation of individual finger movements in humans.

机译:对皮质功率谱的去耦揭示了人类中单个手指运动的实时表示。

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During active movement the electric potentials measured from the surface of the motor cortex exhibit consistent modulation, revealing two distinguishable processes in the power spectrum. At frequencies <40 Hz, narrow-band power decreases occur with movement over widely distributed cortical areas, while at higher frequencies there are spatially more focal power increases. These high-frequency changes have commonly been assumed to reflect synchronous rhythms, analogous to lower-frequency phenomena, but it has recently been proposed that they reflect a broad-band spectral change across the entire spectrum, which could be obscured by synchronous rhythms at low frequencies. In 10 human subjects performing a finger movement task, we demonstrate that a principal component type of decomposition can naively separate low-frequency narrow-band rhythms from an asynchronous, broad-spectral, change at all frequencies between 5 and 200 Hz. This broad-spectral change exhibited spatially discrete representation for individual fingers and reproduced the temporal movement trajectories of different individual fingers.
机译:在主动运动期间,从运动皮层表面测得的电势表现出一致的调制,从而揭示了功率谱中的两个不同过程。在小于40 Hz的频率下,窄带功率随在广泛分布的皮层区域中的移动而发生,而在较高的频率下,空间上的聚焦功率会增加。通常假定这些高频变化反映出同步节奏,类似于低频现象,但是最近有人提出,它们反映了整个频谱的宽带频谱变化,而低频时的同步节奏可能会掩盖这些变化。频率。在执行手指运动任务的10个人类受试者中,我们证明了分解的主要成分类型可以在5至200 Hz的所有频率下,天真地将低频窄带节律与异步,广谱变化分开。这种广谱变化显示了单个手指的空间离散表示,并再现了不同单个手指的时间运动轨迹。

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