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小脑蚓部模式刺激后前额叶皮质局部场电位活动的状态依赖性夹带

State-Dependent Entrainment of Prefrontal Cortex Local Field Potential Activity Following Patterned Stimulation of the Cerebellar Vermis.

作者信息

Tremblay Stéfanie A, Chapman C Andrew, Courtemanche Richard

机构信息

Department of Health, Kinesiology, and Applied Physiology, Center for Studies in Behavioral Neurobiology, Concordia University, Montreal, QC, Canada.

Department of Psychology, Center for Studies in Behavioral Neurobiology, Concordia University, Montreal, QC, Canada.

出版信息

Front Syst Neurosci. 2019 Oct 29;13:60. doi: 10.3389/fnsys.2019.00060. eCollection 2019.

Abstract

The cerebellum is involved in sensorimotor, cognitive, and emotional functions through cerebello-cerebral connectivity. Cerebellar neurostimulation thus likely affects cortical circuits, as has been shown in studies using cerebellar stimulation to treat neurological disorders through modulation of frontal EEG oscillations. Here we studied the effects of different frequencies of cerebellar stimulation on oscillations and coherence in the cerebellum and prefrontal cortex in the urethane-anesthetized rat. Local field potentials were recorded in the right lateral cerebellum (Crus I/II) and bilaterally in the prefrontal cortex (frontal association area, FrA) in adult male Sprague-Dawley rats. Stimulation was delivered to the cerebellar vermis (lobule VII) using single pulses (0.2 Hz for 60 s), or repeated pulses at 1 Hz (30 s), 5 Hz (10 s), 25 Hz (2 s), and 50 Hz (1 s). Effects of stimulation were influenced by the initial state of EEG activity which varies over time during urethane-anesthesia; 1 Hz stimulation was more effective when delivered during the slow-wave state (Stage 1), while stimulation with single-pulse, 25, and 50 Hz showed stronger effects during the activated state (Stage 2). Single-pulses resulted in increases in oscillatory power in the delta and theta bands for the cerebellum, and in frequencies up to 80 Hz in cortical sites. 1 Hz stimulation induced a decrease in 0-30 Hz activity and increased activity in the 30-200 Hz range, in the right FrA. 5 Hz stimulation reduced power in high frequencies in Stage 1 and induced mixed effects during Stage 2.25 Hz stimulation increased cortical power at low frequencies during Stage 2, and increased power in higher frequency bands during Stage 1. Stimulation at 50 Hz increased delta-band power in all recording sites, with the strongest and most rapid effects in the cerebellum. 25 and 50 Hz stimulation also induced state-dependent effects on cerebello-cortical and cortico-cortical coherence at high frequencies. Cerebellar stimulation can therefore entrain field potential activity in the FrA and drive synchronization of cerebello-cortical and cortico-cortical networks in a frequency-dependent manner. These effects highlight the role of the cerebellar vermis in modulating large-scale synchronization of neural networks in non-motor frontal cortex.

摘要

小脑通过小脑 - 大脑连接参与感觉运动、认知和情感功能。因此,小脑神经刺激可能会影响皮质回路,正如在通过调节额叶脑电图振荡使用小脑刺激治疗神经系统疾病的研究中所显示的那样。在这里,我们研究了不同频率的小脑刺激对乌拉坦麻醉大鼠小脑和前额叶皮质振荡及相干性的影响。在成年雄性Sprague-Dawley大鼠的右侧外侧小脑(Crus I/II)和双侧前额叶皮质(额叶联合区,FrA)记录局部场电位。使用单脉冲(0.2 Hz,持续60秒)或1 Hz(30秒)、5 Hz(10秒)、25 Hz(2秒)和50 Hz(1秒)的重复脉冲刺激小脑蚓部(小叶VII)。刺激的效果受脑电图活动初始状态的影响,在乌拉坦麻醉期间脑电图活动随时间变化;1 Hz刺激在慢波状态(第1阶段)时更有效,而单脉冲、25 Hz和50 Hz刺激在激活状态(第2阶段)时显示出更强的效果。单脉冲导致小脑的δ和θ频段振荡功率增加,以及皮质部位高达80 Hz的频率增加。1 Hz刺激导致右侧FrA中0 - 30 Hz活动减少,30 - 200 Hz范围内活动增加。5 Hz刺激在第1阶段降低高频功率,在第2阶段诱导混合效应。25 Hz刺激在第2阶段增加低频皮质功率,在第1阶段增加高频频段功率。50 Hz刺激增加所有记录部位的δ频段功率,在小脑中效果最强且最快。25 Hz和50 Hz刺激还在高频时对小脑 - 皮质和皮质 - 皮质相干性产生状态依赖性影响。因此,小脑刺激可以带动FrA中的场电位活动,并以频率依赖的方式驱动小脑 - 皮质和皮质 - 皮质网络的同步。这些效应突出了小脑蚓部在调节非运动额叶皮质神经网络大规模同步中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b696/6828963/c976bb9536e4/fnsys-13-00060-g001.jpg

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