Department of Neurobiology, Weizmann Institute of Science, 76100 Rehovot, Israel.
J Neurosci. 2013 Sep 4;33(36):14359-68. doi: 10.1523/JNEUROSCI.1748-13.2013.
Cortical activity is determined by the balance between excitation and inhibition. To examine how shifts in brain activity affect this balance, we recorded spontaneous excitatory and inhibitory synaptic inputs into layer 4 neurons from rat somatosensory cortex while altering the depth of anesthesia. The rate of excitatory and inhibitory events was reduced by ∼50% when anesthesia was deepened. However, whereas both the amplitude and width of inhibitory synaptic events profoundly increased under deep anesthesia, those of excitatory events were unaffected. These effects were found using three different types of anesthetics, suggesting that they are caused by the network state and not by local specific action of the anesthetics. To test our hypothesis that the size of inhibitory events increased because of the decreased rate of synaptic activity under deep anesthesia, we blocked cortical excitation and replayed the slow and fast patterns of inhibitory inputs using intracortical electrical stimulation. Evoked inhibition was larger under low-frequency stimulation, and, importantly, this change occurred regardless of the depth of anesthesia. Hence, shifts in the balance between excitation and inhibition across distinct states of cortical activity can be explained by the rate of inhibitory inputs combined with their short-term plasticity properties, regardless of the actual global brain activity.
皮层活动由兴奋和抑制之间的平衡决定。为了研究大脑活动的变化如何影响这种平衡,我们在改变麻醉深度的同时,记录了来自大鼠体感皮层第 4 层神经元的自发兴奋性和抑制性突触输入。当麻醉加深时,兴奋性和抑制性事件的频率降低了约 50%。然而,尽管在深度麻醉下,抑制性突触事件的幅度和宽度都显著增加,但兴奋性事件不受影响。这三种不同类型的麻醉剂都有这些作用,这表明它们是由网络状态引起的,而不是麻醉剂的局部特定作用引起的。为了验证我们的假设,即深度麻醉下由于突触活动率降低,抑制性事件的幅度增大,我们阻断了皮质兴奋,并使用皮质内电刺激回放缓慢和快速的抑制性输入模式。在低频刺激下,诱发的抑制作用更大,重要的是,这种变化与麻醉深度无关。因此,不同皮层活动状态下兴奋和抑制之间平衡的变化可以用抑制性输入的速率以及它们的短期可塑性特性来解释,而与实际的全局大脑活动无关。