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猫的 17 区到 21a 区的特征特定的方向和方向适应传播。

The feature-specific propagation of orientation and direction adaptation from areas 17 to 21a in cats.

机构信息

Vision Research Laboratory, School of Life Sciences, The State Key Laboratory of Medical Neurobiology, Collaborative Innovation Center for Brain Science, Fudan University, Shanghai, 200433, China.

出版信息

Sci Rep. 2017 Mar 24;7(1):390. doi: 10.1038/s41598-017-00419-x.

Abstract

Adaptation plays a key role in visual information processing, and investigations on the adaptation across different visual regions will be helpful to understand how information is processed dynamically along the visual streams. Recent studies have found the enhanced adaptation effects in the early visual system (from LGN to V1) and the dorsal stream (from V1 to MT). However, it remains unclear how adaptation effect propagates along the form/orientation stream in the visual system. In this study, we compared the orientation and direction adaptation evoked by drifting gratings and stationary flashing gratings, as well as moving random dots, in areas 17 and 21a simultaneously of cats. Recorded by single-unit and intrinsic signal optical imaging, induced by both top-up and biased adaptation protocols, the orientation adaptation effect was greater in response decline and preferred orientation shifts in area 21a compared to area 17. However, for the direction adaptation, no difference was observed between these two areas. These results suggest the feature-specific propagation of the adaptation effect along the visual stream.

摘要

适应在视觉信息处理中起着关键作用,对不同视觉区域的适应进行研究将有助于了解信息如何沿着视觉流动态地进行处理。最近的研究发现,早期视觉系统(从外侧膝状体到 V1)和背侧流(从 V1 到 MT)中的适应增强效应。然而,适应效应如何沿着视觉系统中的形态/方向流传播仍不清楚。在这项研究中,我们比较了猫的 17 区和 21a 区同时对漂移光栅和静止闪烁光栅以及移动随机点的诱发的方向和方向适应,通过单细胞和固有信号光学成像记录,由顶部补充和有偏适应协议引起,与 17 区相比,21a 区的反应下降和优势取向变化引起的方向适应效应更大。然而,对于方向适应,这两个区域之间没有观察到差异。这些结果表明,适应效应沿着视觉流具有特定的特征传播。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/06fe/5428465/6efdb3b8f097/41598_2017_419_Fig1_HTML.jpg

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