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High frequency synchrony in the cerebellar cortex during goal directed movements

机译:目标定向运动过程中小脑皮层的高频同步

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The cerebellum is involved in sensory-motor integration and cognitive functions. The origin and function of the field potential oscillations in the cerebellum, especially in the high frequencies, have not been explored sufficiently. The primary objective of this study was to investigate the spatio-temporal characteristics of high frequency field potentials (150–350 Hz) in the cerebellar cortex in a behavioral context. To this end, we recorded from the paramedian lobule in rats using micro electro-corticogram (μ-ECoG) electrode arrays while the animal performed a lever press task using the forelimb. The phase synchrony analysis shows that the high frequency oscillations recorded at multiple points across the paramedian cortex episodically synchronize immediately before and desynchronize during the lever press. The electrode contacts were grouped according to their temporal course of phase synchrony around the time of lever press. Contact groups presented patches with slightly stronger synchrony values in the medio-lateral direction, and did not appear to form parasagittal zones. The size and location of these patches on the cortical surface are in agreement with the sensory evoked granular layer patches originally reported by Welker's lab (Shambes et al., 1978 ). Spatiotemporal synchrony of high frequency field potentials has not been reported at such large-scales previously in the cerebellar cortex.
机译:小脑参与感觉运动整合和认知功能。小脑,特别是在高频中,场电位振荡的起因和功能尚未得到充分的研究。这项研究的主要目的是研究行为背景下小脑皮层中高频场电位(150-350 Hz)的时空特征。为此,我们使用微皮层电图(μ-ECoG)电极阵列从大鼠的中旁小叶记录下来,而动物则使用前肢执行杠杆按压任务。相位同步分析表明,记录在副中脑皮层多个点处的高频振荡在杠杆按下之前即刻同步并失步。电极触头根据其在杠杆按下时的时间同步过程进行分组。接触组的斑块在中外侧方向具有略强的同步值,并且似乎没有形成矢状旁带。这些斑块在皮层表面的大小和位置与最初由Welker实验室报道的感觉诱发的颗粒层斑块一致(Shambes等,1978)。以前尚未在小脑皮质如此大规模地报道高频场电位的时空同步。

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