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优势垂直方向处理无需聚类映射:利用鸽子视觉脑叶的电压敏感染料成像的早期视觉大脑动力学

Dominant vertical orientation processing without clustered maps: early visual brain dynamics imaged with voltage-sensitive dye in the pigeon visual Wulst.

机构信息

Cognitive Neurobiology, Ruhr University Bochum, D-44780 Bochum, Germany.

出版信息

J Neurosci. 2010 May 12;30(19):6713-25. doi: 10.1523/JNEUROSCI.4078-09.2010.

Abstract

The pigeon is a widely established behavioral model of visual cognition, but the processes along its most basic visual pathways remain mostly unexplored. Here, we report the neuronal population dynamics of the visual Wulst, an assumed homolog of the mammalian striate cortex, captured for the first time with voltage-sensitive dye imaging. Responses to drifting gratings were characterized by focal emergence of activity that spread extensively across the entire Wulst, followed by rapid adaptation that was most effective in the surround. Using additional electrophysiological recordings, we found cells that prefer a variety of orientations. However, analysis of the imaged spatiotemporal activation patterns revealed no clustered orientation map-like arrangements as typically found in the primary visual cortices of many mammalian species. Instead, the vertical orientation was overrepresented, both in terms of the imaged population signal, as well as the number of neurons preferring the vertical orientation. Such enhanced selectivity for the vertical orientation may result from horizontal motion vectors that trigger adaptation to the extensive flow field input during natural behavior. Our findings suggest that, although the avian visual Wulst is homologous to the primary visual cortex in terms of its gross anatomical connectivity and topology, its detailed operation and internal organization is still shaped according to specific input characteristics.

摘要

鸽子是一种广泛建立的视觉认知行为模型,但沿其最基本的视觉通路的过程仍在很大程度上未被探索。在这里,我们报告了视觉脑叶的神经元群体动力学,这是哺乳动物纹状皮层的假定同源物,这是首次通过电压敏感染料成像来捕获。对漂移光栅的反应以活动的焦点出现为特征,该活动广泛传播到整个脑叶,然后迅速适应,在周围环境中最为有效。使用额外的电生理记录,我们发现了对各种方向有偏好的细胞。然而,对成像的时空激活模式的分析并未揭示出通常在许多哺乳动物物种的初级视觉皮层中发现的聚类方向图样排列。相反,垂直方向在成像的群体信号以及偏好垂直方向的神经元数量方面都有过表达。这种对垂直方向的增强选择性可能是由于水平运动矢量触发了对自然行为期间广泛输入流场的适应。我们的发现表明,尽管鸟类的视觉脑叶在其大体解剖连接和拓扑结构方面与初级视觉皮层同源,但它的详细运作和内部组织仍然根据特定的输入特征来塑造。

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