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A neural substrate for object permanence in monkey inferotemporal cortex

机译:猴子颞下皮质皮层内物体持久性的神经基质

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摘要

We take it for granted that objects continue to exist after being occluded. This knowledge - known as object permanence - is present even in childhood, but its neural basis is not fully understood. Here, we show that monkey inferior temporal (IT) neurons carry potential signals of object permanence even in animals that received no explicit behavioral training. We compared two conditions with identical visual stimulation: the same object emerged from behind an occluder as expected following its occlusion, or unexpectedly after occlusion of a different object. Some neurons produced a larger (surprise) signal when the object emerged unexpectedly, whereas other neurons produced a larger (match) signal when the object reappeared as expected. Neurons carrying match signals also reinstated selective delay period activity just before the object emerged. Thus, signals related to object permanence are present in IT neurons and may arise through an interplay of memory and match computations.
机译:我们认为对象被遮挡后继续存在是理所当然的。这种知识-称为对象永久性-甚至在儿童时代就已经存在,但是其神经基础尚未完全理解。在这里,我们显示,即使在未接受任何明确行为训练的动物中,猴子下颞(IT)神经元也可能携带对象永久存在的信号。我们比较了在相同视觉刺激下的两种情况:同一物体在闭塞之后从闭塞器后面出现,或者在闭塞另一个物体后出乎意料。当物体意外出现时,一些神经元会产生较大(惊奇)的信号,而当物体按预期方式重新出现时,其他神经元会产生较大(匹配)的信号。携带匹配信号的神经元也就在物体出现之前恢复了选择性延迟期活动。因此,与对象永久性有关的信号存在于IT神经元中,并且可能通过内存和匹配计算的相互作用而出现。

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    Puneeth NC; Arun SP;

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  • 年度 2016
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