Audiovisual integration in depth: multisensory binding and gain as a function of distance

被引:0
作者
Jean-Paul Noel
Kahan Modi
Mark T. Wallace
Nathan Van der Stoep
机构
[1] Vanderbilt University,Neuroscience Graduate Program, Vanderbilt Brain Institute, Vanderbilt University Medical Center
[2] Vanderbilt University,Vanderbilt Brain Institute, Vanderbilt University Medical Center
[3] Vanderbilt University Medical Center,Department of Hearing and Speech Sciences
[4] Vanderbilt University,Department of Psychology
[5] Vanderbilt University Medical Center,Department of Psychiatry
[6] Utrecht University,Department of Experimental Psychology, Helmholtz Institute
来源
Experimental Brain Research | 2018年 / 236卷
关键词
Multisensory Integration; Audiovisual; Depth; Space; Temporal-binding window; Gain;
D O I
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中图分类号
学科分类号
摘要
The integration of information across sensory modalities is dependent on the spatiotemporal characteristics of the stimuli that are paired. Despite large variation in the distance over which events occur in our environment, relatively little is known regarding how stimulus-observer distance affects multisensory integration. Prior work has suggested that exteroceptive stimuli are integrated over larger temporal intervals in near relative to far space, and that larger multisensory facilitations are evident in far relative to near space. Here, we sought to examine the interrelationship between these previously established distance-related features of multisensory processing. Participants performed an audiovisual simultaneity judgment and redundant target task in near and far space, while audiovisual stimuli were presented at a range of temporal delays (i.e., stimulus onset asynchronies). In line with the previous findings, temporal acuity was poorer in near relative to far space. Furthermore, reaction time to asynchronously presented audiovisual targets suggested a temporal window for fast detection—a range of stimuli asynchronies that was also larger in near as compared to far space. However, the range of reaction times over which multisensory response enhancement was observed was limited to a restricted range of relatively small (i.e., 150 ms) asynchronies, and did not differ significantly between near and far space. Furthermore, for synchronous presentations, these distance-related (i.e., near vs. far) modulations in temporal acuity and multisensory gain correlated negatively at an individual subject level. Thus, the findings support the conclusion that multisensory temporal binding and gain are asymmetrically modulated as a function of distance from the observer, and specifies that this relationship is specific for temporally synchronous audiovisual stimulus presentations.
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页码:1939 / 1951
页数:12
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