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皮质反馈增强了初级视皮层、次级视皮层和三级视皮层神经元对图形和背景的辨别能力。

Cortical feedback improves discrimination between figure and background by V1, V2 and V3 neurons.

作者信息

Hupé J M, James A C, Payne B R, Lomber S G, Girard P, Bullier J

机构信息

Cerveau et Vision INSERM 371, Bron, France.

出版信息

Nature. 1998 Aug 20;394(6695):784-7. doi: 10.1038/29537.

Abstract

A single visual stimulus activates neurons in many different cortical areas. A major challenge in cortical physiology is to understand how the neural activity in these numerous active zones leads to a unified percept of the visual scene. The anatomical basis for these interactions is the dense network of connections that link the visual areas. Within this network, feedforward connections transmit signals from lower-order areas such as V1 or V2 to higher-order areas. In addition, there is a dense web of feedback connections which, despite their anatomical prominence, remain functionally mysterious. Here we show, using reversible inactivation of a higher-order area (monkey area V5/MT), that feedback connections serve to amplify and focus activity of neurons in lower-order areas, and that they are important in the differentiation of figure from ground, particularly in the case of stimuli of low visibility. More specifically, we show that feedback connections facilitate responses to objects moving within the classical receptive field; enhance suppression evoked by background stimuli in the surrounding region; and have the strongest effects for stimuli of low salience.

摘要

单一视觉刺激会激活许多不同皮质区域的神经元。皮质生理学中的一个主要挑战是理解这些众多活跃区域中的神经活动如何导致对视觉场景的统一感知。这些相互作用的解剖学基础是连接视觉区域的密集连接网络。在这个网络中,前馈连接将信号从诸如V1或V2等低阶区域传输到高阶区域。此外,存在一个密集的反馈连接网络,尽管它们在解剖学上很突出,但在功能上仍然神秘。在这里,我们通过对一个高阶区域(猴脑V5/MT区)进行可逆失活实验表明,反馈连接起到放大和聚焦低阶区域神经元活动的作用,并且它们在区分图形与背景方面很重要,特别是在低可见度刺激的情况下。更具体地说,我们表明反馈连接促进对在经典感受野内移动的物体的反应;增强周围区域背景刺激引起的抑制;并且对低显著性刺激具有最强的影响。

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