Department of Ophthalmology and Visual Science, Moran Eye Institute, University of Utah, Salt Lake City, UT, USA.
Medical Science, School of Science, Western Sydney University, Campbelltown, NSW, Australia.
Nat Commun. 2021 Aug 13;12(1):4911. doi: 10.1038/s41467-021-24928-6.
The mammalian sensory neocortex consists of hierarchically organized areas reciprocally connected via feedforward (FF) and feedback (FB) circuits. Several theories of hierarchical computation ascribe the bulk of the computational work of the cortex to looped FF-FB circuits between pairs of cortical areas. However, whether such corticocortical loops exist remains unclear. In higher mammals, individual FF-projection neurons send afferents almost exclusively to a single higher-level area. However, it is unclear whether FB-projection neurons show similar area-specificity, and whether they influence FF-projection neurons directly or indirectly. Using viral-mediated monosynaptic circuit tracing in macaque primary visual cortex (V1), we show that V1 neurons sending FF projections to area V2 receive monosynaptic FB inputs from V2, but not other V1-projecting areas. We also find monosynaptic FB-to-FB neuron contacts as a second motif of FB connectivity. Our results support the existence of FF-FB loops in primate cortex, and suggest that FB can rapidly and selectively influence the activity of incoming FF signals.
哺乳动物感觉新皮层由通过前馈 (FF) 和反馈 (FB) 回路相互连接的层次化组织区域组成。几种分层计算理论将皮层的大部分计算工作归因于两对皮层区域之间的循环 FF-FB 回路。然而,这种皮质间循环是否存在尚不清楚。在高等哺乳动物中,单个 FF 投射神经元的传入神经几乎仅投射到单个更高层次的区域。然而,尚不清楚 FB 投射神经元是否表现出类似的区域特异性,以及它们是直接还是间接影响 FF 投射神经元。我们使用猴初级视觉皮层 (V1) 中的病毒介导的单突触回路示踪技术,表明将 FF 投射发送到 V2 的 V1 神经元接收来自 V2 的单突触 FB 输入,但不接收来自其他 V1 投射区域的输入。我们还发现,单突触 FB 到 FB 神经元接触是 FB 连接的第二个模式。我们的结果支持灵长类皮层中 FF-FB 环的存在,并表明 FB 可以快速且选择性地影响传入 FF 信号的活性。