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听觉逼近偏向的皮质特征显示了新生儿和年轻人之间特定线索的适应性。

Cortical signatures of auditory looming bias show cue-specific adaptation between newborns and young adults.

作者信息

Ignatiadis Karolina, Baier Diane, Barumerli Roberto, Sziller István, Tóth Brigitta, Baumgartner Robert

机构信息

Acoustics Research Institute, Austrian Academy of Sciences, Vienna, Austria.

Division of Obstetrics and Gynaecology, DBC, Szent Imre University Teaching Hospital, Budapest, Hungary.

出版信息

Commun Psychol. 2024;2(1):56. doi: 10.1038/s44271-024-00105-5. Epub 2024 Jun 8.

Abstract

Adaptive biases in favor of approaching, or "looming", sounds have been found across ages and species, thereby implicating the potential of their evolutionary origin and universal basis. The human auditory system is well-developed at birth, yet spatial hearing abilities further develop with age. To disentangle the speculated inborn, evolutionary component of the auditory looming bias from its learned counterpart, we collected high-density electroencephalographic data across human adults and newborns. As distance-motion cues we manipulated either the sound's intensity or spectral shape, which is pinna-induced and thus prenatally inaccessible. Through cortical source localisation we demonstrated the emergence of the bias in both age groups at the level of Heschl's gyrus. Adults exhibited the bias in both attentive and inattentive states; yet differences in amplitude and latency appeared based on attention and cue type. Contrary to the adults, in newborns the bias was elicited only through manipulations of intensity and not spectral cues. We conclude that the looming bias comprises innate components while flexibly incorporating the spatial cues acquired through lifelong exposure.

摘要

人们发现,在各个年龄段和物种中都存在有利于接近或“逼近”声音的适应性偏差,这暗示了其具有进化起源和普遍基础的可能性。人类听觉系统在出生时就已发育良好,但空间听觉能力会随着年龄的增长而进一步发展。为了区分听觉逼近偏差中推测的先天性、进化成分与其后天习得的成分,我们收集了人类成年人和新生儿的高密度脑电图数据。作为距离运动线索,我们操纵了声音的强度或频谱形状,后者是由耳廓引起的,因此在出生前无法感知。通过皮质源定位,我们证明了在两个年龄组中,这种偏差都出现在颞横回水平。成年人在注意力集中和不集中的状态下都表现出这种偏差;然而,基于注意力和线索类型,振幅和潜伏期出现了差异。与成年人不同的是,新生儿仅通过强度操纵而非频谱线索引发了这种偏差。我们得出结论,逼近偏差包含先天性成分,同时灵活地整合了通过终身接触获得的空间线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2875/11332033/f77cb60003c9/44271_2024_105_Fig1_HTML.jpg

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