Department of Psychology, Vanderbilt University, Nashville, Tennessee.
J Comp Neurol. 2020 Dec 1;528(17):3075-3094. doi: 10.1002/cne.24885. Epub 2020 Feb 24.
Considerable evidence supports the premise that the visual system of primates develops hierarchically, with primary visual cortex developing structurally and functionally first, thereby influencing the subsequent development of higher cortical areas. An apparent exception is the higher order middle temporal visual area (MT), which appears to be histologically distinct near the time of birth in marmosets. Here we used a number of histological and immunohistological markers to evaluate the maturation of cortical and subcortical components of the visual system in galagos ranging from newborns to adults. Galagos are representative of the large strepsirrhine branch of primate evolution, and studies of these primates help identify brain features that are broadly similar across primate taxa. The histological results support the view that MT is functional at or near the time of birth, as is primary visual cortex. Likewise, the superior colliculus, dorsal lateral geniculate nucleus, and the posterior nucleus of the pulvinar are well-developed by birth. Thus, these subcortical structures likely provide visual information directly or indirectly to cortex in newborn galagos. We conclude that MT resembles a primary sensory area by developing early, and that the early development of MT may influence the subsequent development of dorsal stream visual areas.
大量证据支持灵长类动物的视觉系统是分层发育的,初级视觉皮层首先在结构和功能上发育,从而影响更高层次皮质区域的后续发育。一个明显的例外是高级中颞视觉区(MT),在狨猴出生时,其在组织学上似乎明显不同。在这里,我们使用了许多组织学和免疫组织化学标记物来评估从新生儿到成年的夜猴视觉系统的皮质和皮质下成分的成熟度。夜猴是灵长类动物进化的大栉状分支的代表,对这些灵长类动物的研究有助于确定在整个灵长类动物分类中广泛相似的大脑特征。组织学结果支持 MT 在出生时或接近出生时具有功能的观点,初级视觉皮层也是如此。同样,上丘、外侧膝状体背核和丘脑后核在出生时就发育良好。因此,这些皮质下结构可能直接或间接地为新生儿夜猴的皮质提供视觉信息。我们得出结论,MT 通过早期发育类似于初级感觉区,并且 MT 的早期发育可能影响背侧流视觉区的后续发育。