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Sound symbolic congruency detection in humans but not in great apes

机译:声音符号一致性检测在人类中但在大型猿类中却没有

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摘要

Theories on the evolution of language highlight iconicity as one of the unique features of human language. One important manifestation of iconicity is sound symbolism, the intrinsic relationship between meaningless speech sounds and visual shapes, as exemplified by the famous correspondences between the pseudowords ‘maluma’ vs. ‘takete’ and abstract curved and angular shapes. Although sound symbolism has been studied extensively in humans including young children and infants, it has never been investigated in non-human primates lacking language. In the present study, we administered the classic “takete-maluma” paradigm in both humans (N = 24 and N = 31) and great apes (N = 8). In a forced choice matching task, humans but not great apes, showed crossmodal sound symbolic congruency effects, whereby effects were more pronounced for shape selections following round-sounding primes than following edgy-sounding primes. These results suggest that the ability to detect sound symbolic correspondences is the outcome of a phylogenetic process, whose underlying emerging mechanism may be relevant to symbolic ability more generally.
机译:关于语言进化的理论强调象似性是人类语言的独特特征之一。象似性的一个重要体现是声音象征意义,即无意义的语音和视觉形状之间的内在联系,例如假名“ maluma”与“ takete”与抽象的弯曲和有角形状之间的著名对应就说明了这一点。尽管声音符号已经在包括幼儿和婴儿在内的人类中进行了广泛的研究,但从未在缺乏语言的非人类灵长类动物中对其进行过研究。在本研究中,我们在人类(N = 24和N = 31)和大猿猴(N = 8)中都采用了经典的“ takete-maluma”范例。在强制选择匹配任务中,人类而不是大猿猴表现出交联的声音象征性的全等效应,因此,对于选择圆角质数的人来说,效果比对尖锐音质的人来说更明显。这些结果表明,检测声音符号对应关系的能力是系统发育过程的结果,其潜在的新兴机制可能更普遍地与符号能力有关。

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