Dimwamwa Elaida, Pala Aurelie, Chundru Vivek, Wright Nathaniel C, Stanley Garrett B
bioRxiv. 2024 Feb 7:2023.07.18.549491. doi: 10.1101/2023.07.18.549491.
The feedback projections from cortical layer 6 (L6CT) to sensory thalamus have long been implicated in playing a primary role in gating sensory signaling but remain poorly understood. To causally elucidate the full range of effects of these projections, we targeted silicon probe recordings to the whisker thalamocortical circuit of awake mice selectively expressing Channelrhodopsin-2 in L6CT neurons. Through optogenetic manipulation of L6CT neurons, multi-site electrophysiological recordings, and modeling of L6CT circuitry, we establish L6CT neurons as dynamic modulators of ongoing spiking in the ventro-posterior-medial nucleus of thalamus (VPm), either suppressing or enhancing VPm spiking depending on L6CT neurons' firing rate and synchrony. Differential effects across the cortical excitatory and inhibitory sub-populations point to an overall influence of L6CT feedback on cortical excitability that could have profound implications for regulating sensory signaling across a range of ethologically relevant conditions.
长期以来,人们一直认为从皮层第6层(L6CT)到感觉丘脑的反馈投射在控制感觉信号传导中起主要作用,但对此仍知之甚少。为了因果性地阐明这些投射的全部效应,我们将硅探针记录靶向于在L6CT神经元中选择性表达通道视紫红质-2的清醒小鼠的胡须丘脑皮质回路。通过对L6CT神经元进行光遗传学操作、多部位电生理记录以及L6CT神经回路建模,我们确定L6CT神经元是丘脑腹后内侧核(VPm)中正在进行的动作电位的动态调节因子,根据L6CT神经元的放电频率和同步性,要么抑制要么增强VPm的动作电位。皮层兴奋性和抑制性子群体的不同效应表明L6CT反馈对皮层兴奋性具有总体影响,这可能对在一系列与行为学相关的条件下调节感觉信号传导具有深远意义。