Eccles Institute of Neuroscience, John Curtin School of Medical Research, The Australian National University, Canberra, ACT, Australia.
Australian Research Council Centre of Excellence for Integrative Brain Function, The Australian National University Node, Canberra, ACT, Australia.
Nat Commun. 2020 Apr 3;11(1):1693. doi: 10.1038/s41467-020-15443-1.
The cortex modulates activity in superior colliculus via a direct projection. What is largely unknown is whether (and if so how) the superior colliculus modulates activity in the cortex. Here, we investigate this issue and show that optogenetic activation of superior colliculus changes the input-output relationship of neurons in somatosensory cortex, enhancing responses to low amplitude whisker deflections. While there is no direct pathway from superior colliculus to somatosensory cortex, we found that activation of superior colliculus drives spiking in the posterior medial (POm) nucleus of the thalamus via a powerful monosynaptic pathway. Furthermore, POm neurons receiving input from superior colliculus provide monosynaptic excitatory input to somatosensory cortex. Silencing POm abolished the capacity of superior colliculus to modulate cortical whisker responses. Our findings indicate that the superior colliculus, which plays a key role in attention, modulates sensory processing in somatosensory cortex via a powerful di-synaptic pathway through the thalamus.
大脑皮层通过直接投射来调节上丘的活动。但目前还不完全清楚上丘是否(以及如何)调节皮层的活动。在这里,我们研究了这个问题,并表明光遗传学激活上丘改变了感觉皮层神经元的输入-输出关系,增强了对低幅度胡须偏转的反应。虽然从上丘到感觉皮层没有直接通路,但我们发现上丘的激活通过一条强大的单突触通路驱动丘脑后内侧(POm)核的神经元放电。此外,接收来自上丘输入的 POm 神经元向上丘提供单突触兴奋性输入到感觉皮层。沉默 POm 消除了上丘调节皮层胡须反应的能力。我们的发现表明,在上丘在注意力中起着关键作用,通过丘脑的强大双突触通路来调节感觉皮层的感觉处理。