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Behavioral Indices of Multisensory Integration: Orientation to Visual Cues is Affected by Auditory Stimuli

机译:多感觉整合的行为指标:视觉提示的方向受听觉刺激的影响。

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Physiological studies have demonstrated that inputs from different sensory modalities converge on, and are integrated by, individual superior colliculus neurons and that this integration is governed by specific spatial rules. The present experiments were an attempt to relate these neural processes to overt behavior by determining if behaviors believed to involve the circuitry of the superior colliculus would show similar multisensory dependencies and be subject to the same rules of integration. The neurophysiological-behavioral parallels proved to be striking. The effectiveness of a stimulus of one modality in eliciting attentive and orientation behaviors was dramatically affected by the presence of a stimulus from another modality in each of the three behavioral paradigms used here. Animals trained to approach a low intensity visual cue had their performance significantly enhanced when a brief, low intensity auditory stimulus was presented at the same location as the visual cue, but their performance was significantly depressed when the auditory stimulus was disparate to it. These effects were independent of the animals' experience with the modifying (i.e. auditory) stimulus and exceeded what might have been predicted statistically based on the animals' performance with each single-modality cue. The multiplicative nature of these multisensory interactions and their dependence on the relative positions and intensities of the two stimuli were all very similar to those observed physiologically for single cells. The few differences that were observed appeared to reflect the fact that understanding integration at the level of the single cell requires reference to the individual cell's multisensory receptive field properties, while at the behavioral level populations of receptive fields must be evaluated. These data illustrate that the rules governing multisensory integration at the level of the single cell also predict responses to these stimuli in the intact behavi- g organism.
机译:生理研究表明,来自不同感觉方式的输入汇聚在单个上丘神经元上并由其整合,并且这种整合受特定的空间规则支配。本实验是通过确定被认为涉及上丘神经系统的行为是否表现出相似的多感觉依赖性并服从相同的整合规则,从而将这些神经过程与明显的行为联系起来的尝试。神经生理学和行为学的相似性被证明是惊人的。在这里使用的三种行为范式中,一种模式刺激引起注意和定向行为的有效性受到另一种模式刺激的显着影响。经过短暂训练的低强度听觉刺激在与视觉提示相同的位置出现时,经过训练以接近低强度视觉提示的动物的表现明显增强,但是当听觉刺激与其不同时,它们的表现就会显着降低。这些影响与动物对修饰(即听觉)刺激的体验无关,并且超过了根据每种单模态提示动物的表现进行统计学预测的结果。这些多感觉相互作用的乘法性质以及它们对两种刺激的相对位置和强度的依赖性都非常类似于对单个细胞的生理观察。观察到的一些差异似乎反映出这样一个事实,即在单个细胞水平上理解整合需要参考单个细胞的多感官感受野特性,而在行为水平上必须评估感受野群体。这些数据表明,在单个细胞水平上控制多感官整合的规则还可以预测完整行为生物对这些刺激的反应。

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