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首页> 外文期刊>NeuroImage >Selective responses to specular surfaces in the macaque visual cortex revealed by fMRI
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Selective responses to specular surfaces in the macaque visual cortex revealed by fMRI

机译:功能磁共振成像显示对猕猴视觉皮层镜面表面的选择性反应

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The surface properties of objects, such as gloss, transparency and texture, provide important information about the material characteristics of objects in our visual environment. However, because there have been few reports on the neuronal responses to surface properties in primates, we still lack information about where and how surface properties are processed in the primate visual cortex. In this study, we used functional magnetic resonance imaging (fMRI) to examine the cortical responses to specular surfaces in the macaque visual cortex. Using computer graphics, we generated images of specular and matte objects and prepared scrambled images by locally randomizing the luminance phases of the images with specular and matte objects. In experiment 1, we contrasted the responses to specular images with those to matte and scrambled images. Activation was observed along the ventral visual pathway, including V1, V2, V3, V4 and the posterior inferior temporal (IT) cortex. In experiment 2, we manipulated the contrasts of images and found that the activation observed in these regions could not be explained solely by the global or local contrasts. These results suggest that image features related to specular surface are processed along the ventral visual pathway from V1 to specific regions in the IT cortex. This is consistent with previous human fMRI experiments that showed surface properties are processed in the ventral visual pathway.
机译:对象的表面属性(例如光泽度,透明度和纹理)可提供有关我们视觉环境中对象的材料特性的重要信息。但是,由于关于灵长类动物对表面特性的神经元反应的报道很少,因此我们仍然缺乏有关在灵长类动物视皮层中何处以及如何处理表面特性的信息。在这项研究中,我们使用功能磁共振成像(fMRI)来检查对猕猴视觉皮层镜面表面的皮质反应。使用计算机图形学,我们生成镜面反射和遮罩对象的图像,并通过局部随机化镜面反射和遮罩对象的图像的亮度相位来准备加扰的图像。在实验1中,我们对比了对镜面图像的响应与对粗糙和加扰图像的响应。沿腹侧视觉通路观察到了激活,包括V1,V2,V3,V4和后下颞叶(IT)皮质。在实验2中,我们操纵了图像的对比度,发现在这些区域中观察到的激活不能仅由全局或局部对比度来解释。这些结果表明,与镜面表面相关的图像特征沿从V1到IT皮质中特定区域的腹侧视觉路径进行处理。这与以前的人类功能磁共振成像实验一致,后者显示表面特性在腹侧视觉通路中得到处理。

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