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欧洲椋鸟的时间腹语效应:两条并行处理通路的证据。

Temporal ventriloquism effect in European starlings: Evidence for two parallel processing pathways.

作者信息

Feenders Gesa, Kato Yoko, Borzeszkowski Katharina M, Klump Georg M

机构信息

Animal Physiology and Behaviour Group, Cluster of Excellence Hearing4all, Department of Neuroscience, School of Medicine and Health Sciences, University of Oldenburg.

出版信息

Behav Neurosci. 2017 Aug;131(4):337-47. doi: 10.1037/bne0000200.

Abstract

The brain constantly has to interpret stimuli from a range of modalities originating from the same or different objects to create unambiguous percepts. The mechanisms of such multisensory processing have been intensely studied with respect to the time window of integration or the effect of spatial separation. However, the neural mechanisms remain elusive with respect to the role of alerting effects and multisensory integration. We addressed this issue by choosing a test paradigm where we could manipulate potentially alerting stimuli and simultaneously activating stimuli independently: We measured the temporal ventriloquism effect in European starlings by using the temporal order judgment paradigm with subjects judging the temporal order of the lighting of 2 spatially separated lights. If spatially noninformative acoustic stimuli were added to the visual stimuli the performance improved when the 2 visual stimuli were flanked by acoustic cues with a small time-offset compared to synchronous presentation. Two acoustic cues presented with asymmetric offsets showed that this effect was mainly driven by the cue trailing the second visual stimulus, while an acoustic cue leading the first visual stimulus had less effect. In contrast, 1 singleton acoustic cue prior to the first visual stimulus, without a second acoustic cue, enhanced performance. Our results support the hypothesis that the first stimulus pair with the leading sound activates alerting mechanisms and enhances neural processing, while the second stimulus pair with the trailing sound drives multisensory integration by simultaneous activation within the temporal binding window. (PsycINFO Database Record

摘要

大脑必须持续解读来自一系列源自相同或不同物体的模态的刺激,以创造明确无误的感知。关于整合的时间窗口或空间分离的影响,这种多感官处理的机制已得到深入研究。然而,关于警觉效应和多感官整合的作用,神经机制仍然难以捉摸。我们通过选择一种测试范式来解决这个问题,在该范式中我们可以独立操纵潜在的警觉刺激和同时激活的刺激:我们通过使用时间顺序判断范式,让欧洲椋鸟判断两个空间分离的灯光的点亮时间顺序,来测量欧洲椋鸟的时间腹语效应。如果在视觉刺激中添加空间上无信息的声学刺激,当两个视觉刺激与同步呈现相比,在有小时间偏移的声学线索两侧时,表现会有所改善。两个具有不对称偏移的声学线索表明,这种效应主要由跟随第二个视觉刺激的线索驱动,而领先于第一个视觉刺激的声学线索影响较小。相比之下,在第一个视觉刺激之前的单个声学线索,没有第二个声学线索,会提高表现。我们的结果支持这样的假设,即带有领先声音的第一对刺激激活警觉机制并增强神经处理,而带有跟随声音的第二对刺激通过在时间绑定窗口内的同时激活来驱动多感官整合。(PsycINFO数据库记录)

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