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人类嗅觉感知在单次嗅探中嵌入了精细的时间分辨率。

Human olfactory perception embeds fine temporal resolution within a single sniff.

机构信息

State Key Laboratory of Brain and Cognitive Science, Institute of Psychology, Chinese Academy of Sciences, Beijing, China.

Department of Psychology, University of Chinese Academy of Sciences, Beijing, China.

出版信息

Nat Hum Behav. 2024 Nov;8(11):2168-2178. doi: 10.1038/s41562-024-01984-8. Epub 2024 Oct 14.

Abstract

A sniff in humans typically lasts one to three seconds and is commonly considered to produce a long-exposure shot of the chemical environment that sets the temporal limit of olfactory perception. To break this limit, we devised a sniff-triggered apparatus that controls odorant deliveries within a sniff with a precision of 18 milliseconds. Using this apparatus, we show through rigorous psychophysical testing of 229 participants (649 sessions) that two odorants presented in one order and its reverse become perceptually discriminable when the stimulus onset asynchrony is merely 60 milliseconds (Cohen's d = 0.48; 95% confidence interval, (55, 59); 120-millisecond difference). Discrimination performance improves with the length of stimulus onset asynchrony and is independent of explicit knowledge of the temporal order of odorants or the relative amount of odorant molecules accumulated in a sniff. Our findings demonstrate that human olfactory perception is sensitive to chemical dynamics within a single sniff and provide behavioural evidence for a temporal code of odour identity.

摘要

人类的一次嗅闻通常持续一到三秒,通常被认为可以产生一个长时间的化学环境曝光,从而设定了嗅觉感知的时间限制。为了打破这个限制,我们设计了一种嗅闻触发装置,可以在一次嗅闻中以 18 毫秒的精度控制气味的传递。通过对 229 名参与者(649 个时段)的严格心理物理测试,我们使用该装置表明,当刺激起始时间间隔仅为 60 毫秒时,两种以一种顺序呈现的气味及其反转变得可感知区分(Cohen's d = 0.48;95%置信区间,(55,59);120 毫秒差异)。辨别性能随刺激起始时间间隔的延长而提高,并且与对气味时间顺序的明确知识或在一次嗅闻中积累的气味分子的相对量无关。我们的发现表明,人类嗅觉对单次嗅闻中的化学动态敏感,并为气味身份的时间编码提供了行为证据。

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