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The Parahippocampal Place Area Responds Preferentiallyto High Spatial Frequencies in Humans and Monkeys

机译:海马海马安置区得到优先回应人和猴子的高空间频率

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摘要

Defining the exact mechanisms by which the brain processes visual objects and scenes remains an unresolved challenge. Valuable clues to this process have emerged from the demonstration that clusters of neurons (“modules”) in inferior temporal cortex apparently respond selectively to specific categories of visual stimuli, such as places/scenes. However, the higher-order “category-selective” response could also reflect specific lower-level spatial factors. Here we tested this idea in multiple functional MRI experiments, in humans and macaque monkeys, by systematically manipulating the spatial content of geometrical shapes and natural images. These tests revealed that visual spatial discontinuities (as reflected by an increased response to high spatial frequencies) selectively activate a well-known place-selective region of visual cortex (the “parahippocampal place area”) in humans. In macaques, we demonstrate a homologous cortical area, and show that it also responds selectively to higher spatial frequencies. The parahippocampal place area may use such information for detecting object borders and scene details during spatial perception and navigation.
机译:定义大脑处理视觉对象和场景的确切机制仍然是一个尚未解决的挑战。关于这一过程的重要线索来自以下证据:颞下皮质的神经元簇(“模块”)显然对特定类别的视觉刺激(例如位置/场景)做出选择性反应。但是,较高级别的“类别选择性”响应也可能反映特定的较低级别的空间因素。在这里,我们通过系统地操纵几何形状和自然图像的空间内容,在人类和猕猴的多功能MRI实验中测试了这个想法。这些测试表明,视觉空间不连续性(反映为对高空间频率的增强反应)选择性激活了人类视觉皮层的众所周知的位置选择区域(“海马旁区域”)。在猕猴中,我们展示了一个同源的皮质区域,并表明它也选择性地响应较高的空间频率。海马旁区域可以使用这种信息来在空间感知和导航期间检测对象边界和场景细节。

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