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Evolutionary origins of non-adjacent sequence processing in primate brain potentials

机译:灵长类脑电势中非相邻序列处理的进化起源

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摘要

There is considerable interest in understanding the ontogeny and phylogeny of the human language system, yet, neurobiological work at the interface of both fields is absent. Syntactic processes in language build on sensory processing and sequencing capabilities on the side of the receiver. While we better understand language-related ontogenetic changes in the human brain, it remains a mystery how neurobiological processes at specific human development stages compare with those in phylogenetically closely related species. To address this knowledge gap, we measured EEG event-related potentials (ERPs) in two macaque monkeys using a paradigm developed to evaluate human infant and adult brain potentials associated with the processing of non-adjacent ordering relationships in sequences of syllable triplets. Frequent standard triplet sequences were interspersed with infrequent voice pitch or non-adjacent rule deviants. Monkey ERPs show early pitch and rule deviant mismatch responses that are strikingly similar to those previously reported in human infants. This stands in contrast to adults’ later ERP responses for rule deviants. The results reveal how non-adjacent sequence ordering relationships are processed in the primate brain and provide evidence for evolutionarily conserved neurophysiological effects, some of which are remarkably like those seen at an early human developmental stage.
机译:人们对理解人类语言系统的本体和系统发育有着极大的兴趣,但是,在这两个领域的交界处都缺乏神经生物学工作。语言中的句法处理过程建立在接收器一侧的感觉处理和排序功能上。尽管我们更好地了解了人类大脑中与语言相关的个体遗传学变化,但是在特定人类发育阶段的神经生物学过程与系统发生密切相关物种的神经生物学过程相比,仍然是一个谜。为了解决这一知识鸿沟,我们使用开发用于评估与音节三连音序列中非相邻有序关系的处理相关的人类婴儿和成年脑电势的范例,测量了两只猕猴的脑电事件相关电位(ERP)。常见的标准三连音序列散布着不常见的音高或不相邻的规则偏差。猴子ERP表现出早期的俯仰和规则偏离失配响应,与先前在人类婴儿中报道的响应极为相似。这与成年人后来针对规则违规者的ERP反应相反。结果揭示了在灵长类动物大脑中如何处理非相邻的序列有序关系,并为进化上保守的神经生理作用提供了证据,其中一些与人类早期发育阶段的表现非常相似。

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