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Coding of digit displacement by cell spiking and network oscillations in the monkey sensorimotor cortex

机译:猴感觉运动皮层中细胞突触和网络振荡引起的手指移位编码

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beta-Band oscillations occur in motor and somatosensory cortices and muscle activity. Oscillations appear most strongly after movements, suggesting that they may represent or probe the limb's final sensory state. We tested this idea by training two macaque monkeys to perform a finger flexion to one of four displacements, which was then held for 2 s without visual feedback of absolute displacement. Local field potential (LFP) and single unit spiking were recorded from the rostral and caudal primary motor cortex and parietal areas 3a, 3b, 2, and 5. Information theoretic analysis determined how well unit firing rate or the power of LFP oscillations coded finger displacement. All areas encoded significant information about finger displacement after the movement into target, both in beta-band (~20 Hz) oscillatory activity and unit firing rate. On average, the information carried by unit firing was greater (0.07 bits) and peaked earlier (0.73 s after peak velocity) than that by LFP betab-oscillations (0.05 bits and 0.95 s). However, there was considerable heterogeneity among units: some cells did not encode maximal information until midway through the holding phase. In 30% of cells, information in rate lagged information in LFP oscillations recorded at the same site. Finger displacement may be represented in the cortex in multiple ways. Coding the digit configuration immediately after a movement probably relies on nonoscillatory feedback, or efference copy. With increasing delay after movement cessation, oscillatory processing may also play a part.
机译:β波段振荡发生在运动和体感皮层以及肌肉活动中。运动后振荡最强烈,表明它们可以代表或探测肢体的最终感觉状态。我们通过训练两只猕猴将手指弯曲到四个位移之一来测试了这个想法,然后将其保持2 s,而没有视觉反馈。记录了从前额和尾部初级运动皮层和顶区3a,3b,2和5记录的局部场电势(LFP)和单个单位峰值。信息理论分析确定了单位发射率或LFP振荡功率编码手指位移的程度如何。所有区域都编码了有关移入目标后手指移位的重要信息,包括β波段(〜20 Hz)振荡活动和单位发射速率。平均而言,单位发射所携带的信息(0.07位)要比LFP跳动振动的峰值(0.05位和0.95 s)更大(0.07位),并且达到峰值(峰值速度后0.73 s)更早。但是,单元之间存在相当大的异质性:一些单元直到保持阶段的中途才编码最大信息。在30%的单元中,LFP振荡中的速率滞后信息中的信息记录在同一位置。手指移位可以多种方式表示在皮质中。运动后立即对数字配置进行编码可能依赖于非振荡反馈或参考副本。随着停止运动后延迟的增加,振荡处理也可能起作用。

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