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Joint neuronal tuning for object form and position in the human lateral occipital complex

机译:关节神经元调整,用于人类枕骨外侧复合体中的对象形式和位置

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摘要

A long-standing heuristic in visual neuroscience holds that extrastriate visual cortex is parceled into a dorsal "where" pathway concerned with stimulus position and motion and a ventral "what" pathway concerned with stimulus form. Several recent studies using functional magnetic resonance imaging (fMRI), however, have shown that small changes in the position of a single object can produce reliable changes in activity patterns in object-selective lateral occipital complex (LOC). Although these data demonstrate that information about both object form and position is present at the region level in LOC, the extent to which they reflect joint neuronal tuning to these dimensions is unclear. To measure joint tuning for form and position, we used fMRI to record patterns of activity evoked in LOC and other visual areas while subjects viewed pairs of objects that varied in category content, overall position, and relative object position. Consistent with previous results, multivoxel activity patterns in LOC varied reliably with the category content and position of object pairs. Moreover, activity patterns in the lateral occipital (LO) subregion of LOC varied significantly with the relative positions of objects within pairs, even when absolute pair position was constant. This result provides strong evidence for the existence of neuronal populations in LO which are jointly tuned for both object form (i.e., category) and position.
机译:视觉神经科学中的一种长期启发式方法认为,外提物视觉皮层可分为与刺激位置和运动有关的背侧“途径”和与刺激形式有关的腹侧“什么”途径。但是,最近使用功能磁共振成像(fMRI)进行的几项研究表明,单个对象位置的微小变化可以在对象选择性侧枕复合体(LOC)中产生可靠的活动模式变化。尽管这些数据表明在LOC的区域级别上存在有关对象形式和位置的信息,但它们反映关节神经元向这些尺寸的调整的程度尚不清楚。为了测量形式和位置的联合调整,我们使用功能磁共振成像来记录在LOC和其他视觉区域中引发的活动模式,而受试者则观看了成对的对象,这些对象的类别内容,总体位置和相对对象位置各不相同。与先前的结果一致,LOC中的多体素活动模式随类别对的内容和对象对的位置而可靠地变化。此外,LOC的枕骨外侧(LO)子区域中的活动模式会随着对象在对象对中的相对位置而显着变化,即使绝对对象对的位置恒定也是如此。该结果为LO中存在神经元种群提供了有力的证据,它们针对对象形式(即类别)和位置共同调整。

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