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The inferior temporal cortex is a potential cortical precursor of orthographic processing in untrained monkeys

机译:较差的时间皮质是未经训练的猴子中的正交加工的潜在皮质前体

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The ability to recognize written letter strings is foundational to human reading, but the underlying neuronal mechanisms remain largely unknown. Recent behavioral research in baboons suggests that non-human primates may provide an opportunity to investigate this question. We recorded the activity of hundreds of neurons in V4 and the inferior temporal cortex (IT) while na?ve macaque monkeys passively viewed images of letters, English words and non-word strings, and tested the capacity of those neuronal representations to support a battery of orthographic processing tasks. We found that simple linear read-outs of IT (but not V4) population responses achieved high performance on all tested tasks, even matching the performance and error patterns of baboons on word classification. These results show that the IT cortex of untrained primates can serve as a precursor of orthographic processing, suggesting that the acquisition of reading in humans relies on the recycling of a brain network evolved for other visual functions.
机译:识别书面信箱字符串的能力是人类阅读的,但潜在的神经元机制仍然很大程度上是未知的。狒狒最近的行为研究表明,非人类的灵长类动物可以提供调查这个问题的机会。我们在V4和较低的时间皮层(IT)中记录了数百个神经元的活动,而Na?Ve Macakque Monkeys被动地观赏了字母,英语单词和非词汇字符串的图像,并测试了那些神经元表示的容量来支持电池正交处理任务。我们发现它的简单线性读出(但不是V4)人口响应在所有测试任务中实现了高性能,甚至匹配了狒狒的性能和错误模式。这些结果表明,未训练的灵长类动物的IT皮质可以作为正交处理的前体,表明人类阅读的读数依赖于脑网络的再循环,以便其他视觉功能。

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