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Crossmodal interactions and multisensory integration in the perception of audio-visual motion - A free-field study

机译:音频视觉运动感知中的跨型互动和多思考集成 - 自由场研究

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Motion perception can be altered by information received through multiple senses. So far, the interplay between the visual and the auditory modality in peripheral motion perception is scarcely described. The present free-field study investigated audio-visual motion perception for different azimuthal trajectories in space. To disentangle effects related to crossmodal interactions (the influence of one modality on signal processing in another modality) and multisensory integration (binding of bimodal streams), we manipulated the subjects' attention in two experiments on a single set of moving audio-visual stimuli. Acoustic and visual signals were either congruent or spatially and temporally disparate at motion offset. (i) Crossmodal interactions were studied in a selective attention task. Subjects were instructed to attend to either the acoustic or the visual stream and to indicate the perceived final position of motion. (ii) Multisensory integration was studied in a divided attention task in which subjects were asked to report whether they perceived unified or separated audio-visual motion offsets. The results indicate that crossmodal interactions in motion perception do not depend on the integration of the audio-visual stream. Furthermore, in the crossmodal task, both visual and auditory motion perception were susceptible to modulation by irrelevant streams, provided that temporal disparities did not exceed a critical range. Concurrent visual streams modulated auditory motion perception in the central field, whereas concurrent acoustic streams attracted visual motion information in the periphery. Differential abilities between the visual and auditory system when attempting to accurately track positional information along different trajectories account for the observed biasing effects.
机译:通过通过多种感测的信息可以改变运动感知。到目前为止,几乎没有描述视觉和听觉模型之间的相互作用。目前的自由场研究调查了对太空中不同方位角轨迹的视听运动感知。为了解开与跨型相互作用相关的效果(一种方式对另一种方式中的信号处理的影响)和多句子集成(双峰流的结合),我们在一组移动视听刺激上操纵了对两个实验的主题的注意力。声学和视觉信号在一起或在空间上,在运动偏移时呈现间隔。 (i)在选择性关注任务中研究了跨导相互作用。指示受试者参加声学或视觉流,并指示感知的运动的最终位置。 (ii)在划分的注意任务中研究了多福管集成,其中要求受试者报告他们是否感知统一或分离的视听运动偏移。结果表明,运动感知中的跨透明度相互作用不依赖于视听流的集成。此外,在跨透视任务中,视觉和听觉运动感知易受不相关的流的影响,只要时间差异不超过临界范围。并发视觉流在中心场中调制听觉运动感知,而并发声流在外围中吸引了视觉运动信息。试图准确地跟踪不同轨迹的位置信息时,视觉和听觉系统之间的差分能力占观察到的偏置效应。

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