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OBJECT-RELATED ACTIVITY REVEALED BY FUNCTIONAL MAGNETIC RESONANCE IMAGING IN HUMAN OCCIPITAL CORTEX

机译:功能性磁共振成像在人类枕叶皮质中揭示的与物体有关的活动

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The stages of integration leading from local feature analysis to object recognition were explored in human visual cortex by using the technique of functional magnetic resonance imaging. Here we report evidence for object-related activation. Such activation was located at the lateral-posterior aspect of the occipital lobe, just abutting the posterior aspect of the motion-sensitive area MT/V5, in a region termed the lateral occipital complex (LO), LO showed preferential activation to images of objects, compared to a wide range of texture patterns, This activation was not caused by a global difference in the Fourier spatial frequency content of objects versus texture images, since object images produced enhanced LO activation compared to textures matched in power spectra but randomized in phase, The preferential activation to objects also could not be explained by different patterns of eye movements: similar levels of activation were observed when subjects fixated on the objects and when they scanned the objects with their eyes, Additional manipulations such as spatial frequency filtering and a 4-fold change in visual size did not affect LO activation, These results suggest that the enhanced responses to objects were not a manifestation of low-level visual processing, A striking demonstration that activity in LO is uniquely correlated to object detectability was produced by the ''Lincoln'' illusion, in which blurring of objects digitized into large blocks paradoxically increases their recognizability. Such blurring led to significant enhancement of LO activation, Despite the preferential activation to objects, LO did not seem to be involved in the final, ''semantic,'' stages of the recognition process, Thus, objects varying widely in their recognizability (e.g., famous faces, common objects, and unfamiliar three-dimensional abstract sculptures) activated it to a similar degree. These results are thus evidence for an intermediate link in the chain of processing stages leading to object recognition in human visual cortex. [References: 17]
机译:利用功能磁共振成像技术,探索了从局部特征分析到物体识别的整合阶段。在这里,我们报告了与对象相关的激活的证据。这种激活位于枕叶的后外侧,紧靠运动敏感区MT / V5的后侧,位于称为枕外侧复合体(LO)的区域,LO显示出对物体图像的优先激活与各种各样的纹理图案相比,这种激活不是由对象与纹理图像的傅立叶空间频率含量的全局差异引起的,因为与功率谱匹配但相位随机的纹理相比,对象图像产生的LO激活增强,物体的优先激活也无法用不同的眼动模式来解释:当对象固定在物体上并用眼睛扫描物体时,观察到相似的激活水平;其他操作(例如空间频率滤波和4-视觉尺寸的倍数变化不会影响LO激活,这些结果表明,对物体的增强反应不是``林肯''错觉产生了一个惊人的证明,即低能见度视觉处理中LO的活动与物体的可检测性具有独特的联系,其中数字化为大块的物体的模糊反常增加了它们的可识别性。这种模糊导致LO激活显着增强,尽管对象优先激活,但LO似乎并没有参与识别过程的最终“语义”阶段。因此,对象的可识别性差异很大(例如, ,著名的面孔,常见的对象和陌生的三维抽象雕塑)将其激活到相似的程度。因此,这些结果证明了在人类视觉皮层中导致对象识别的加工阶段链中存在中间环节。 [参考:17]

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