Department of Anatomy and Neurobiology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
J Neurosci. 2013 Jan 23;33(4):1696-705. doi: 10.1523/JNEUROSCI.3067-12.2013.
Previous studies of intracortical connections in mouse visual cortex have revealed two subnetworks that resemble the dorsal and ventral streams in primates. Although calcium imaging studies have shown that many areas of the ventral stream have high spatial acuity whereas areas of the dorsal stream are highly sensitive for transient visual stimuli, there are some functional inconsistencies that challenge a simple grouping into "what/perception" and "where/action" streams known in primates. The superior colliculus (SC) is a major center for processing of multimodal sensory information and the motor control of orienting the eyes, head, and body. Visual processing is performed in superficial layers, whereas premotor activity is generated in deep layers of the SC. Because the SC is known to receive input from visual cortex, we asked whether the projections from 10 visual areas of the dorsal and ventral streams terminate in differential depth profiles within the SC. We found that inputs from primary visual cortex are by far the strongest. Projections from the ventral stream were substantially weaker, whereas the sparsest input originated from areas of the dorsal stream. Importantly, we found that ventral stream inputs terminated in superficial layers, whereas dorsal stream inputs tended to be patchy and either projected equally to superficial and deep layers or strongly preferred deep layers. The results suggest that the anatomically defined ventral and dorsal streams contain areas that belong to distinct functional systems, specialized for the processing of visual information and visually guided action, respectively.
先前对小鼠视觉皮层内皮质连接的研究揭示了两个类似于灵长类动物背侧和腹侧流的子网。虽然钙成像研究表明,腹侧流的许多区域具有高空间分辨率,而背侧流的区域对瞬态视觉刺激高度敏感,但仍存在一些功能不一致的情况,这对简单地将其分组为灵长类动物中的“感知/知觉”和“位置/行动”流提出了挑战。上丘(SC)是处理多模态感觉信息和眼睛、头部和身体定向运动控制的主要中心。视觉处理在浅层进行,而运动前活动则在 SC 的深层产生。由于已知 SC 接收来自视觉皮层的输入,我们想知道来自背侧和腹侧流的 10 个视觉区域的投射是否在 SC 内以不同的深度分布终止。我们发现,来自初级视觉皮层的输入是迄今为止最强的。来自腹侧流的投射明显较弱,而来自背侧流的输入则最少。重要的是,我们发现腹侧流的输入终止于浅层,而背侧流的输入倾向于呈斑片状,要么同样投射到浅层和深层,要么强烈偏好深层。研究结果表明,在解剖学上定义的背侧和腹侧流包含属于不同功能系统的区域,分别专门用于处理视觉信息和视觉引导的行动。