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Curvature Processing Dynamics in Macaque Area V4

机译:猕猴区V4中的曲率处理动力学

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摘要

We have previously analyzed shape processing dynamics in macaque monkey posterior inferotemporal cortex (PIT). We described how early PIT responses to individual contour fragments evolve into tuning for multifragment shape configurations. Here, we analyzed curvature processing dynamics in area V4, which provides feedforward inputs to PIT. We contrasted 2 hypotheses: 1) that V4 curvature tuning evolves from tuning for simpler elements, analogous to PIT shape synthesis and 2) that V4 curvature tuning emerges immediately, based on purely feedforward mechanisms. Our results clearly supported the first hypothesis. Early V4 responses carried information about individual contour orientations. Tuning for multiorientation (curved) contours developed gradually over ∼50 ms. Together, the current and previous results suggest a partial sequence for shape synthesis in ventral pathway cortex. We propose that early orientation signals are synthesized into curved contour fragment representations in V4 and that these signals are transmitted to PIT, where they are then synthesized into multifragment shape representations. The observed dynamics might additionally or alternatively reflect influences from earlier (V1, V2) and later (central and anterior IT) processing stages in the ventral pathway. In either case, the dynamics of contour information in V4 and PIT appear to reflect a sequential hierarchical process of shape synthesis.
机译:我们之前已经分析了猕猴后颞下皮质(PIT)的形状加工动力学。我们描述了早期PIT对单个轮廓片段的响应如何演变为针对多片段形状配置的调整。在这里,我们分析了区域V4中的曲率处理动力学,它为PIT提供了前馈输入。我们对2个假设进行了对比:1)V4曲率调整是从对简单元素的调整中演变而来的,类似于PIT形状合成; 2)V4曲率调整是基于纯前馈机制而立即出现的。我们的结果清楚地支持了第一个假设。早期的V4响应包含有关各个轮廓方向的信息。多方向(弯曲)轮廓的调整在约50毫秒内逐渐发展。在一起,当前和以前的结果表明在腹侧通路皮层中形状合成的部分序列。我们建议将早期定向信号合成为V4中的弯曲轮廓片段表示,并将这些信号传输到PIT,然后再将其合成为多片段形状表示。观察到的动力学可能另外或替代地反映了腹侧通路早期(V1,V2)和后期(中央和前IT)处理阶段的影响。在这两种情况下,V4和PIT中轮廓信息的动态似乎都反映了形状合成的顺序分层过程。

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