Pan Huijun, Zhang Shen, Pan Deng, Ye Zheng, Yu Hao, Ding Jian, Wang Qin, Sun Qingyan, Hua Tianmiao
College of Life Sciences, Anhui Normal University, Wuhu, China.
Front Neuroanat. 2021 Jan 8;14:616465. doi: 10.3389/fnana.2020.616465. eCollection 2020.
Previous studies indicate that top-down influence plays a critical role in visual information processing and perceptual detection. However, the substrate that carries top-down influence remains poorly understood. Using a combined technique of retrograde neuronal tracing and immunofluorescent double labeling, we characterized the distribution and cell type of feedback neurons in cat's high-level visual cortical areas that send direct connections to the primary visual cortex (V1: area 17). Our results showed: (1) the high-level visual cortex of area 21a at the ventral stream and PMLS area at the dorsal stream have a similar proportion of feedback neurons back projecting to the V1 area, (2) the distribution of feedback neurons in the higher-order visual area 21a and PMLS was significantly denser than in the intermediate visual cortex of area 19 and 18, (3) feedback neurons in all observed high-level visual cortex were found in layer II-III, IV, V, and VI, with a higher proportion in layer II-III, V, and VI than in layer IV, and (4) most feedback neurons were CaMKII-positive excitatory neurons, and few of them were identified as inhibitory GABAergic neurons. These results may argue against the segregation of ventral and dorsal streams during visual information processing, and support "reverse hierarchy theory" or interactive model proposing that recurrent connections between V1 and higher-order visual areas constitute the functional circuits that mediate visual perception. Also, the corticocortical feedback neurons from high-level visual cortical areas to the V1 area are mostly excitatory in nature.
先前的研究表明,自上而下的影响在视觉信息处理和知觉检测中起着关键作用。然而,承载自上而下影响的神经基质仍知之甚少。我们运用逆行神经元追踪和免疫荧光双标记相结合的技术,对猫的高级视觉皮层区域中向初级视觉皮层(V1:17区)发送直接连接的反馈神经元的分布和细胞类型进行了表征。我们的结果显示:(1)腹侧流的21a区和背侧流的PMLS区的高级视觉皮层中,反馈到V1区的神经元比例相似;(2)高阶视觉区21a和PMLS中反馈神经元的分布明显比19区和18区的中级视觉皮层更密集;(3)在所有观察到的高级视觉皮层中,反馈神经元存在于II-III层、IV层、V层和VI层,其中II-III层、V层和VI层中的比例高于IV层;(4)大多数反馈神经元是CaMKII阳性兴奋性神经元,少数被鉴定为抑制性GABA能神经元。这些结果可能与视觉信息处理过程中腹侧流和背侧流的分离观点相悖,并支持“反向层次理论”或交互模型,该模型提出V1与高阶视觉区之间的递归连接构成了介导视觉感知的功能回路。此外,从高级视觉皮层区域到V1区的皮质皮质反馈神经元在本质上大多是兴奋性的。