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Turning off cortical ensembles stops striatal Up states and elicits phase perturbations in cortical and striatal slow oscillations in rat in vivo

机译:关闭皮质集合体可停止大鼠体内的纹状体Up状态并引起皮质和纹状体缓慢振荡的相位扰动

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摘要

In vivo, cortical neurons and striatal medium spiny neurons (MSN) display robust subthreshold depolarizations (Up states) during which they are enabled to fire action potentials. In the cortex, Up states are believed to occur simultaneously in a neuronal ensemble and to be sustained by local network interactions. It is known that MSN are impelled into the Up state by extra-striatal (primarily cortical) inputs, but the mechanisms that sustain and determine the end of striatal Up states are still debated. Furthermore, it has not been established if brisk perturbations of ongoing cortical oscillations alter rhythmic transitions between Up and Down states in striatal neurons. Here we report that MSN Up states terminate abruptly when persistent activity in cortical ensembles providing afferents to a given striatal region is turned off by local electrical stimulation or ends spontaneously. In addition, we found that phase perturbations in MSN membrane potential slow oscillations induced by cortical stimulation replicate the stimulus-induced dynamics of spiking activity in cortical ensembles. Overall, these results suggest that striatal Up states are single-cell subthreshold representations of episodes of persistent spiking in cortical ensembles. A precise spatial and temporal alignment between episodes of cortical persistent activity and striatal Up states would allow MSN to detect specific cortical inputs embedded within a more general cortical signal.
机译:在体内,皮质神经元和纹状体中棘神经元(MSN)表现出强大的亚阈值去极化作用(Up状态),在此期间它们能够激发动作电位。在皮层中,据信Up状态在神经元集合中同时发生,并由局部网络交互作用维持。众所周知,纹状体外(主要是皮层)输入会促使MSN进入Up状态,但是维持和确定纹状体Up状态结束的机制仍存在争议。此外,尚未确定正在进行的皮层振动的快动扰动是否改变纹状体神经元中Up状态和Down状态之间的节律性转变。在这里我们报道当局部电刺激关闭或自发终止向给定纹状体区域提供传入神经的皮质集合体中的持续活动时,MSN Up状态突然终止。此外,我们发现,由皮质刺激引起的MSN膜电位缓慢振荡中的相位扰动复制了皮质集合体中刺激引起的突波活动动力学。总体而言,这些结果表明,纹状体Up状态是皮质集合体中持续性尖峰发作的单细胞亚阈值表示。皮层持续活动发作与纹状体Up状态之间的精确时空对齐将使MSN能够检测嵌入更一般皮层信号中的特定皮层输入。

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