Lewis Laura D, Voigts Jakob, Flores Francisco J, Schmitt L Ian, Wilson Matthew A, Halassa Michael M, Brown Emery N
Society of Fellows, Harvard University, Cambridge, United States.
Athinoula A. Martinos Center for Biomedical Imaging, Massachusetts General Hospital, Boston, United States.
Elife. 2015 Oct 13;4:e08760. doi: 10.7554/eLife.08760.
During low arousal states such as drowsiness and sleep, cortical neurons exhibit rhythmic slow wave activity associated with periods of neuronal silence. Slow waves are locally regulated, and local slow wave dynamics are important for memory, cognition, and behaviour. While several brainstem structures for controlling global sleep states have now been well characterized, a mechanism underlying fast and local modulation of cortical slow waves has not been identified. Here, using optogenetics and whole cortex electrophysiology, we show that local tonic activation of thalamic reticular nucleus (TRN) rapidly induces slow wave activity in a spatially restricted region of cortex. These slow waves resemble those seen in sleep, as cortical units undergo periods of silence phase-locked to the slow wave. Furthermore, animals exhibit behavioural changes consistent with a decrease in arousal state during TRN stimulation. We conclude that TRN can induce rapid modulation of local cortical state.
在诸如困倦和睡眠等低唤醒状态下,皮层神经元表现出与神经元沉默期相关的节律性慢波活动。慢波是局部调节的,局部慢波动力学对记忆、认知和行为很重要。虽然现在已经很好地描述了几种控制全局睡眠状态的脑干结构,但尚未确定皮层慢波快速局部调制的潜在机制。在这里,我们使用光遗传学和全皮层电生理学表明,丘脑网状核(TRN)的局部强直激活在皮层的空间受限区域迅速诱导慢波活动。这些慢波类似于睡眠中看到的慢波,因为皮层单元经历与慢波锁相的沉默期。此外,在TRN刺激期间,动物表现出与唤醒状态降低一致的行为变化。我们得出结论,TRN可以诱导局部皮层状态的快速调制。