Department of Biology, University of Toronto Mississauga, Mississauga, ON, Canada.
Department of Cell and Systems Biology, University of Toronto, Toronto, ON, Canada.
Front Neural Circuits. 2021 Nov 19;15:751331. doi: 10.3389/fncir.2021.751331. eCollection 2021.
Lesion or damage to the primary visual cortex (V1) results in a profound loss of visual perception in humans. Similarly, in mice, optogenetic silencing of V1 profoundly impairs discrimination of orientated gratings. V1 is thought to have such a critical role in perception in part due to its position in the visual processing hierarchy. It is the first brain area in the neocortex to receive visual input, and it distributes this information to more than 18 brain areas. Here I review recent advances in our understanding of the organization and function of the V1 projections in the mouse. This progress is in part due to new anatomical and viral techniques that allow for efficient labeling of projection neurons. In the final part of the review, I conclude by highlighting challenges and opportunities for future research.
初级视皮层(V1)的损伤或病变会导致人类严重的视觉感知丧失。同样,在小鼠中,V1 的光遗传学沉默会严重损害定向光栅的辨别能力。V1 在感知中具有如此关键的作用,部分原因是它在视觉处理层次结构中的位置。它是新皮层中第一个接收视觉输入的大脑区域,它将这些信息分配到 18 个以上的大脑区域。在这里,我回顾了我们对小鼠 V1 投射组织和功能的理解的最新进展。这一进展部分归因于新的解剖学和病毒学技术,这些技术可以有效地标记投射神经元。在综述的最后一部分,我通过强调未来研究的挑战和机遇来结束。