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浦肯野细胞活动共振以8赫兹的偏好频率产生节律性行为。

Purkinje Cell Activity Resonation Generates Rhythmic Behaviors at the Preferred Frequency of 8 Hz.

作者信息

Bauer Staf, van Wingerden Nathalie, Jacobs Thomas, van der Horst Annabel, Zhai Peipei, Betting Jan-Harm L F, Strydis Christos, White Joshua J, De Zeeuw Chris I, Romano Vincenzo

机构信息

Department of Neuroscience, Erasmus MC, 3015 GD Rotterdam, The Netherlands.

Department of Quantum & Computing Engineering, Delft University of Technology, 2628 CD Delft, The Netherlands.

出版信息

Biomedicines. 2022 Jul 29;10(8):1831. doi: 10.3390/biomedicines10081831.

Abstract

Neural activity exhibits oscillations, bursts, and resonance, enhancing responsiveness at preferential frequencies. For example, theta-frequency bursting and resonance in granule cells facilitate synaptic transmission and plasticity mechanisms at the input stage of the cerebellar cortex. However, whether theta-frequency bursting of Purkinje cells is involved in generating rhythmic behavior has remained neglected. We recorded and optogenetically modulated the simple and complex spike activity of Purkinje cells while monitoring whisker movements with a high-speed camera of awake, head-fixed mice. During spontaneous whisking, both simple spike activity and whisker movement exhibit peaks within the theta band. Eliciting either simple or complex spikes at frequencies ranging from 0.5 to 28 Hz, we found that 8 Hz is the preferred frequency around which the largest movement is induced. Interestingly, oscillatory whisker movements at 8 Hz were also generated when simple spike bursting was induced at 2 and 4 Hz, but never via climbing fiber stimulation. These results indicate that 8 Hz is the resonant frequency at which the cerebellar-whisker circuitry produces rhythmic whisking.

摘要

神经活动呈现出振荡、爆发和共振,在特定频率下增强反应性。例如,颗粒细胞中的θ频率爆发和共振在小脑皮质的输入阶段促进突触传递和可塑性机制。然而,浦肯野细胞的θ频率爆发是否参与产生节律性行为一直被忽视。我们在监测清醒、头部固定小鼠的胡须运动时,记录并通过光遗传学调制了浦肯野细胞的简单和复杂锋电位活动。在自发胡须运动期间,简单锋电位活动和胡须运动在θ频段内均出现峰值。在0.5至28 Hz的频率范围内诱发简单或复杂锋电位时,我们发现8 Hz是诱导最大运动的偏好频率。有趣的是,当在2 Hz和4 Hz诱导简单锋电位爆发时,也会产生8 Hz的振荡胡须运动,但通过攀爬纤维刺激则不会产生。这些结果表明,8 Hz是小脑-胡须回路产生节律性胡须运动的共振频率。

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