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Audiovisual integration in depth: Modeling the effect of distance and stimulus effectiveness using the TWIN model

机译:视听集成深度:使用双模型建模距离和刺激效果的效果

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Integrating information across our various sensory modalities results in striking behavioral benefits. This integration depends on a variety of factors, among which are the effectiveness of the stimuli and the relative timing between them. Both of these factors physically vary as a function of the distance between stimuli and the observer: intensity decreases as a function of distance for both auditory and visual stimuli, while the relative timing of energy arriving at the sensory organs differs due to differing transmission speeds. As a result, the depth at which multisensory stimuli are presented is likely to be an important factor in the gain that is derived from integrating them. Here, we use a computational approach - the Time-Window-of Integration (TWIN) framework - to examine differences in simultaneity judgments and reaction times to audiovisual stimuli presented at two depths. Using the TWIN model, we tested whether the observed behavior could be explained solely on the basis of differences in peripheral processing times, on the basis of changes in the temporal binding window (TBW), or by a combination of both factors. The results indicated that a model allowing for different TBWs for near and far space best accounts for the observed data in the majority of participants. However, the best overall model (regardless of the number of parameters) was a model containing both distance-dependent peripheral processing times and TBWs. Interestingly, TBWs were found not to expand from near to far space, but rather to get smaller. Taken together, the results indicate that distance is an additional factor in multisensory integration, above its impact on relative timing and intensity. (C) 2020 The Author(s). Published by Elsevier Inc.
机译:将信息整合到我们的各种感官模式中会带来显著的行为益处。这种整合取决于多种因素,其中包括刺激的有效性和它们之间的相对时间。这两个因素在物理上随刺激物与观察者之间的距离而变化:强度随听觉和视觉刺激物之间的距离而降低,而到达感觉器官的能量的相对时间因传输速度不同而不同。因此,多传感器刺激呈现的深度可能是积分它们所得增益的一个重要因素。在这里,我们使用一种计算方法——积分时间窗(TWIN)框架——来研究在两个深度呈现的视听刺激的同时性判断和反应时间的差异。使用双胞胎模型,我们测试了观察到的行为是否可以仅基于外围处理时间的差异、基于时间绑定窗口(TBW)的变化,或者通过这两个因素的组合来解释。结果表明,考虑到近空间和远空间的不同TBW的模型最好地解释了大多数参与者的观测数据。然而,最好的整体模型(无论参数的数量如何)是一个同时包含依赖于距离的外围处理时间和TBW的模型。有趣的是,人们发现TBW并没有从近空间扩展到远空间,而是变得更小。总的来说,结果表明,距离是多传感器整合中的一个额外因素,超过了它对相对时间和强度的影响。(C) 2020作者。爱思唯尔公司出版。

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