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A channel for 3D environmental shape in anterior inferotemporal cortex

机译:下颞叶皮层3D环境形状的通道

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Inferotemporal cortex (IT) has long been studied as asingle pathway dedicated to object vision, but connectivity analysis reveals anatomically distinct channels, through ventral superior temporal sulcus (STSv) and dorsal/ventral inferotemporal gyrus (TEd, TEv). Here, we report a major functional distinction between channels. We studied individual IT neurons in monkeys viewing stereoscopic 3D images projected on a large screen. We used adaptive stimuli to explore neural tuning for 3D abstract shapes ranging in scale and topology from small, closed, bounded objects to large, open, unbounded environments (landscape-like surfaces and cave-like interiors). In STSv, most neurons were more responsive to objects, as expected. In TEd, surprisingly, most neurons were more responsive to 3D environmental shape. Previous studies have localized environmental information to posterior cortical modules. Our results show it is also channeled through anterior IT, where extensive cross-connections between STSv and TEd could integrate object and environmental shape information.
机译:颞下皮质(IT)长期以来一直被作为研究对象视觉的唯一途径而进行研究,但是连通性分析揭示了解剖上截然不同的通道,即腹侧上颞沟(STSv)和背/腹下颞回(TEd,TEv)。在这里,我们报告了渠道之间的主要功能区别。我们研究了猴子的单个IT神经元,他们观看了投射在大屏幕上的3D立体图像。我们使用自适应刺激来探索3D抽象形状的神经调节,范围从小,封闭,有界对象到大型,开放,无界环境(类似景观的表面和类似洞穴的内部空间),其规模和拓扑结构不一。正如预期的那样,在STSv中,大多数神经元对对象的反应更强。令人惊讶的是,在TEd中,大多数神经元对3D环境形状的反应更加灵敏。先前的研究已将环境信息定位于后皮质模块。我们的结果表明,它也是通过前IT引导的,其中STSv和TEd之间的广泛交叉连接可以集成对象和环境形状信息。

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