Systems Neurobiology Laboratories, Salk Institute for Biological Studies, La Jolla, CA 92037.
Neurosciences Graduate Program, University of California San Diego, La Jolla, CA 92093.
Proc Natl Acad Sci U S A. 2020 Jun 9;117(23):13066-13077. doi: 10.1073/pnas.2002080117. Epub 2020 May 27.
Layer 6 (L6) is the sole purveyor of corticothalamic (CT) feedback to first-order thalamus and also sends projections to higher-order thalamus, yet how it engages the full corticothalamic circuit to contribute to sensory processing in an awake animal remains unknown. We sought to elucidate the functional impact of L6CT projections from the primary visual cortex to the dorsolateral geniculate nucleus (first-order) and pulvinar (higher-order) using optogenetics and extracellular electrophysiology in awake mice. While sustained L6CT photostimulation suppresses activity in both visual thalamic nuclei in vivo, moderate-frequency (10 Hz) stimulation powerfully facilitates thalamic spiking. We show that each stimulation paradigm differentially influences the balance between monosynaptic excitatory and disynaptic inhibitory corticothalamic pathways to the dorsolateral geniculate nucleus and pulvinar, as well as the prevalence of burst versus tonic firing. Altogether, our results support a model in which L6CTs modulate first- and higher-order thalamus through parallel excitatory and inhibitory pathways that are highly dynamic and context-dependent.
第 6 层(L6)是皮质丘脑(CT)反馈到一级丘脑的唯一供应商,也向高级丘脑发送投射,但它如何参与完整的皮质丘脑回路以促进清醒动物的感觉处理仍不清楚。我们试图使用在体光遗传学和体外电生理学来阐明来自初级视觉皮层到外侧膝状体核(一级)和丘脑枕(高级)的 L6CT 投射对清醒小鼠的功能影响。虽然持续的 L6CT 光刺激抑制体内两个视觉丘脑核的活动,但中频率(10 Hz)刺激则有力地促进丘脑放电。我们表明,每种刺激范式都以不同的方式影响外侧膝状体核和丘脑枕的单突触兴奋性和双突触抑制性皮质丘脑通路之间的平衡,以及爆发与紧张放电的出现。总之,我们的结果支持这样一种模型,即 L6CT 通过高度动态和上下文相关的平行兴奋性和抑制性通路来调节一级和高级丘脑。