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Computational model for interactions between auditory and visual motion mechanisms

机译:听觉和视觉运动机制之间相互作用的计算模型

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Jain et al. showed that a strong motion signal in one modality (visual/auditory) influences the perception of a simultaneously present weak motion signal in the other modality (auditory/visual) for motion along the three cardinal axes. Furthermore, they also observed auditory crossmodal motion aftereffects (MAE) for all directions and visual crossmodal MAE for vertical direction of motion. We developed a neurophysiologically plausible computation model to explain the observed interactions. The current model was based on the hypothesis that these crossmodal interactions are mediated by the higher integrative multimodal areas, such as the superior colliculus (SC), through feedback connections to the lower unimodal areas in the human brain.
机译:Jain等。研究表明,一个模态(视觉/听觉)中的强运动信号会影响在另一个模态(听觉/视觉)中同时存在的弱运动信号对沿三个基本轴的运动的感知。此外,他们还观察了所有方向的听觉交叉峰运动后效应(MAE),以及垂直运动的视觉交叉峰MAE。我们开发了一种神经生理学上可行的计算模型来解释观察到的相互作用。当前模型基于这样的假设,即这些交叉峰相互作用是由较高的整合多峰区域(例如上丘胶体(SC))通过与人脑较低的单峰区域的反馈连接来介导的。

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