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鳄鱼的时间整合与决策

Temporal integration and decision-making in crocodiles.

作者信息

Caron Delbosc Naïs, Thévenet Julie, Grosjean Nathalie, Méès Loïc, Boyer Nicolas, Schneider Mélanie, Grimault Nicolas, Mathevon Nicolas

机构信息

ENES Bioacoustics Research Lab, CRNL, CNRS, Inserm, University of Saint-Etienne, 42100 Saint-Etienne, France.

Équipe Cognition Auditive et Psychoacoustique/CRNL, CNRS, Inserm, University Lyon 1, 69500 Bron, France.

出版信息

Biol Open. 2025 May 15;14(5). doi: 10.1242/bio.061844. Epub 2025 May 6.

Abstract

To make appropriate behavioural decisions, animals continuously process a flow of information provided by different sensory channels. Could temporality, i.e. the order in which independent stimuli are perceived, lead the animal to give greater importance to one stimulus than to another? Here we show that the decision of a crocodile to move preferentially towards the source of water surface waves than towards the source of an airborne sound is irrespective of the relative time of arrival of the sound and water vibrations to the animal, as long as the delay between these two stimuli does not exceed a few seconds. To test whether the late arrival of water waves - which travel more slowly than sound - could explain crocodiles' preference for the source of water waves, we controlled the relative timing of stimulus arrival within a time window of a few seconds. Our results reveal that crocodiles preferentially move towards the source of the water waves, whether they arrive after, at the same time as, or before the sound. This suggests that the temporal integration of information from different sensory channels can occur within a certain time window, where the behavioural decision-making remains independent of the arrival order of stimuli. The maximum delay between simultaneously evaluated stimuli probably depends on animal species and context.

摘要

为了做出恰当的行为决策,动物会持续处理由不同感官通道提供的信息流。时间顺序,即独立刺激被感知的顺序,会使动物更重视一种刺激而非另一种吗?在这里我们表明,鳄鱼优先朝着水面波源而非朝着空气传播声音的来源移动的决策,与声音和水振动到达动物的相对时间无关,只要这两种刺激之间的延迟不超过几秒。为了测试水波(其传播速度比声音慢)的延迟到达是否能解释鳄鱼对水波源的偏好,我们在几秒的时间窗口内控制了刺激到达的相对时间。我们的结果表明,无论水波在声音之后、与声音同时还是在声音之前到达,鳄鱼都会优先朝着水波源移动。这表明来自不同感官通道的信息的时间整合可以在一定的时间窗口内发生,在此期间行为决策与刺激的到达顺序无关。同时评估的刺激之间的最大延迟可能取决于动物物种和环境。

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