Solomon H. Snyder Department of Neuroscience, Johns Hopkins University School of Medicine, Baltimore, United States.
Zanvyl Krieger Mind/Brain Institute, Johns Hopkins University, Baltimore, United States.
Elife. 2021 Mar 22;10:e59798. doi: 10.7554/eLife.59798.
A central feature of cortical function is hierarchical processing of information. Little is currently known about how cortical processing cascades develop. Here, we investigate the joint development of two nodes of the ferret's visual motion pathway, primary visual cortex (V1), and higher-level area PSS. In adult animals, motion processing transitions from local to global computations between these areas. We now show that PSS global motion signals emerge a week after the development of V1 and PSS direction selectivity. Crucially, V1 responses to more complex motion stimuli change in parallel, in a manner consistent with supporting increased PSS motion integration. At the same time, these V1 responses depend on feedback from PSS. Our findings suggest that development does not just proceed in parallel in different visual areas, it is coordinated across network nodes. This has important implications for understanding how visual experience and developmental disorders can influence the developing visual system.
皮质功能的一个主要特征是信息的分层处理。目前对于皮质处理级联如何发展还知之甚少。在这里,我们研究了雪貂视觉运动通路的两个节点,即初级视觉皮层(V1)和高级区域 PSS 的联合发育。在成年动物中,运动处理在这些区域之间从局部到全局计算的转变。我们现在表明,PSS 的全局运动信号在 V1 和 PSS 方向选择性发展一周后出现。至关重要的是,V1 对更复杂的运动刺激的反应以一种与支持增加 PSS 运动整合一致的方式平行变化。与此同时,这些 V1 反应依赖于来自 PSS 的反馈。我们的发现表明,发育不仅在不同的视觉区域中平行进行,而且在网络节点之间协调进行。这对于理解视觉经验和发育障碍如何影响发育中的视觉系统具有重要意义。