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

机译:视听深度融合:多感官结合和增益随距离的变化

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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.Electronic supplementary materialThe online version of this article (10.1007/s00221-018-5274-7) contains supplementary material, which is available to authorized users.
机译:跨感觉模态的信息整合取决于配对刺激的时空特性。尽管在我们的环境中事件发生的距离差异很大,但是关于刺激-观察者距离如何影响多感官整合的知之甚少。先前的工作表明,在远处相对于远处空间中,较大的时间间隔内整合了感受性刺激,远处在近处空间中明显存在较大的多感官促进作用。在这里,我们试图检查这些以前建立的距离相关的多感觉处理特征之间的相互关系。参与者在近距离和远距离空间执行视听同时性判断和重复的目标任务,而视听刺激则在一定的时间延迟范围内(即刺激发作异步)出现。与之前的研究结果一致,近距离相对于远距离的时间敏锐度较差。此外,对异步呈现的视听目标的反应时间为快速检测提供了一个时间窗口-与远处空间相比,近处的刺激异步范围也更大。但是,观察到多感官反应增强的反应时间范围被限制在相对较小(即150毫秒)异步的受限范围内,并且在近空间和远空间之间没有显着差异。此外,对于同步演示,这些时间相关的距离相关(即,近距离与远处)调制和多感官增益在单个受试者水平上呈负相关。因此,这些发现支持了以下结论:多感觉时间绑定和增益是根据与观察者之间距离的函数进行非对称调制的,并指定这种关系特定于时间同步视听刺激演示文稿。电子补充材料本文的在线版本(10.1007 / s00221-018-5274-7)包含补充材料,授权用户可以使用。

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