Perceived Congruency in Audiovisual Stimuli Consisting of Gabor Patches and AM and FM Tones.

IF 1.8 4区 心理学 Q3 BIOPHYSICS Multisensory Research Pub Date : 2020-11-26 DOI:10.1163/22134808-bja10041
Natalia Postnova, Yoshitaka Nakajima, Kazuo Ueda, Gerard B Remijn
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Abstract

Experiments that focus on how humans perceive temporal, spatial or synaesthetic congruency in audiovisual sensory information have often employed stimuli consisting of a Gabor patch and an amplitude (AM) or frequency (FM)-modulated sound. Introducing similarity between the static and dynamic features of the Gabor patch and the (carrier) frequency or modulation frequency of the sound is often assumed to be effective enough to induce congruency. However, comparative empirical data on perceived congruency of various stimulus parameters are not readily available, and in particular with respect to sound modulation, it is still not clear which type (AM or FM) induces perceived congruency best in tandem with various patch parameters. In two experiments, we examined Gabor patches of various spatial frequencies with flickering (2, 3 and 4 flickers/s) or drifting (0.5, 1.0 and 1.5 degrees/s) gratings in combinations with AM or FM tones of 2-, 3- and 4-Hz modulation and 500-, 1000- and 2000-Hz carrier frequencies. Perceived congruency ratings were obtained by asking participants to rate stimulus (in)congruency from 1 (incongruent) to 7 (congruent). The data showed that varying the spatial frequency of the Gabor patch and the carrier frequency of the modulated tone had comparatively little impact on perceived congruency. Similar to previous findings, similarity between the temporal frequency of the Gabor patch and the modulated tone effectively promoted perceived congruency. Furthermore, direct comparisons convincingly showed that AM tones in combination with flickering Gabor patches received significantly higher audiovisual congruency ratings compared to FM tones.

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由 Gabor Patches 和调幅及调频音组成的视听刺激中的感知一致性。
有关人类如何感知视听感官信息中的时间、空间或联觉一致性的实验通常采用由 Gabor 补丁和振幅(调幅)或频率(调频)调制声音组成的刺激物。在 Gabor 补丁的静态和动态特征与声音的(载波)频率或调制频率之间引入相似性,通常被认为足以有效地诱导一致性。然而,关于各种刺激参数的感知一致性的比较经验数据并不容易获得,特别是关于声音调制,目前还不清楚哪种类型(调幅或调频)与各种补丁参数结合在一起最能诱发感知一致性。在两项实验中,我们研究了具有闪烁(2、3和4闪烁/秒)或漂移(0.5、1.0和1.5度/秒)光栅的不同空间频率的Gabor光斑,这些光栅与2、3和4赫兹调制频率以及500、1000和2000赫兹载波频率的调幅或调频音调相结合。通过让受试者对刺激物的(不)一致性从 1(不一致)到 7(一致)进行评分,来获得受试者的感知一致性评分。数据显示,改变 Gabor 补丁的空间频率和调制音的载波频率对感知一致性的影响相对较小。与之前的研究结果类似,Gabor 补丁的时间频率和调制音的时间频率的相似性有效地促进了感知一致性。此外,直接比较令人信服地表明,与调频音调相比,调幅音调与闪烁的 Gabor 贴片组合获得的视听一致性评分要高得多。
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来源期刊
Multisensory Research
Multisensory Research BIOPHYSICS-PSYCHOLOGY
CiteScore
3.50
自引率
12.50%
发文量
15
期刊介绍: Multisensory Research is an interdisciplinary archival journal covering all aspects of multisensory processing including the control of action, cognition and attention. Research using any approach to increase our understanding of multisensory perceptual, behavioural, neural and computational mechanisms is encouraged. Empirical, neurophysiological, psychophysical, brain imaging, clinical, developmental, mathematical and computational analyses are welcome. Research will also be considered covering multisensory applications such as sensory substitution, crossmodal methods for delivering sensory information or multisensory approaches to robotics and engineering. Short communications and technical notes that draw attention to new developments will be included, as will reviews and commentaries on current issues. Special issues dealing with specific topics will be announced from time to time. Multisensory Research is a continuation of Seeing and Perceiving, and of Spatial Vision.
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