首页> 外文期刊>The Journal of Physiology >Flexible spike timing of layer 5 neurons during dynamic beta oscillation shifts in rat prefrontal cortex.
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Flexible spike timing of layer 5 neurons during dynamic beta oscillation shifts in rat prefrontal cortex.

机译:在大鼠前额叶皮层动态β振荡位移期间,第5层神经元的灵活刺突时间。

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摘要

Human brain oscillations occur in different frequency bands that have been linked to different behaviours and cognitive processes. Even within specific frequency bands such as the beta- (14-30 Hz) or gamma-band (30-100 Hz), oscillations fluctuate in frequency and amplitude. Such frequency fluctuations most probably reflect changing states of neuronal network activity, as brain oscillations arise from the correlated synchronized activity of large numbers of neurons. However, the neuronal mechanisms governing the dynamic nature of amplitude and frequency fluctuations within frequency bands remain elusive. Here we show that in acute slices of rat prefrontal cortex (PFC), carbachol-induced oscillations in the beta-band show frequency and amplitude fluctuations. Fast and slow non-harmonic frequencies are distributed differentially over superficial and deep cortical layers, with fast frequencies being present in layer 3, while layer 6 only showed slow oscillation frequencies. Layer 5 pyramidal cells and interneurons experience both fast and slow frequencies and they time their spiking with respect to the dominant frequency. Frequency and phase information is encoded and relayed in the layer 5 network through timed excitatory and inhibitory synaptic transmission. Our data indicate that frequency fluctuations in the beta-band reflect synchronized activity in different cortical subnetworks, that both influence spike timing of output layer 5 neurons. Thus, amplitude and frequency fluctuations within frequency bands may reflect activity in distinct cortical neuronal subnetworks that may process information in a parallel fashion.
机译:人脑振荡发生在与不同行为和认知过程相关的不同频带中。即使在特定的频带内,例如β-(14-30 Hz)或gamma频带(30-100 Hz),振荡也会在频率和振幅上波动。这样的频率波动很可能反映了神经元网络活动的变化状态,因为大脑振荡是由大量神经元的相关同步活动引起的。但是,控制频带内幅度和频率波动的动态性质的神经机制仍然难以捉摸。在这里,我们显示在大鼠前额叶皮层(PFC)的急性切片中,在β带中卡巴胆碱引起的振荡显示出频率和幅度波动。快速和慢速非谐波频率在表层和深层皮层上差异分布,其中快速频率出现在第3层中,而第6层仅显示出缓慢的振荡频率。第5层锥体细胞和中间神经元同时经历快频率和慢频率,并且它们相对于主频率而言是尖峰时间。频率和相位信息通过定时的兴奋性和抑制性突触传递在第5层网络中进行编码和中继。我们的数据表明,β波段中的频率波动反映了不同皮层子网络中的同步活动,这两者都会影响输出层5神经元的尖峰时序。因此,频带内的幅度和频率波动可以反映出可以以并行方式处理信息的不同皮质神经元子网中的活动。

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