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一个用于分析远周边视觉中运动的独特皮质区域解剖网络。

A distinct anatomical network of cortical areas for analysis of motion in far peripheral vision.

作者信息

Palmer S M, Rosa M G P

机构信息

Department of Physiology, Monash University, Clayton, VIC 3800, Australia.

出版信息

Eur J Neurosci. 2006 Oct;24(8):2389-405. doi: 10.1111/j.1460-9568.2006.05113.x. Epub 2006 Oct 17.

Abstract

We defined cortical areas involved in the analysis of motion in the far peripheral visual field, a poorly understood aspect of visual processing in primates. This was accomplished by small tracer injections within and around the representations of the monocular field of vision ('temporal crescents') in the middle temporal area (MT) of marmoset monkeys. Quantitative analyses demonstrate that the representation of the far periphery receives specific connections from the retrosplenial cortex (areas 23v and prostriata), as well as comparatively stronger inputs from the primary visual area (V1) and from areas surrounding MT (in particular, the medial superior temporal area, MST). In contrast, the far peripheral representation receives little or no input from most other extrastriate areas, including the second visual area (V2), the densely myelinated areas of the dorsomedial cortex, and ventral stream areas; these areas are shown to have robust projections to other parts of MT. Our results demonstrate that the responses of cells in different parts of a same visual area can be determined by different combinations of synaptic inputs, in terms of areas of origin. They also suggest that the interconnections responsible for motion processing in the far periphery of the visual field convey information that is crucial for rapid-response aspects of visual function such as orienting, postural and defensive reactions.

摘要

我们定义了参与分析远周边视野运动的皮质区域,这是灵长类动物视觉处理中一个了解甚少的方面。这是通过在狨猴颞中区(MT)单眼视野(“颞侧新月”)表征范围内及周围进行小剂量示踪剂注射来实现的。定量分析表明,远周边区域的表征接受来自压后皮质(23v区和前带状区)的特定连接,以及来自初级视觉区(V1)和MT周围区域(特别是内侧颞上区,MST)相对较强的输入。相比之下,远周边区域的表征从大多数其他纹外区域接收很少或没有输入,包括第二视觉区(V2)、背内侧皮质的密集髓鞘区域和腹侧流区域;这些区域被证明对MT的其他部分有强大的投射。我们的结果表明,就起源区域而言,同一视觉区域不同部分的细胞反应可由不同的突触输入组合决定。它们还表明,负责视野远周边运动处理的相互连接传递的信息对于视觉功能的快速反应方面(如定向、姿势和防御反应)至关重要。

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