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首页> 外文期刊>BMC Neuroscience >Hemodynamic responses in human multisensory and auditory association cortex to purely visual stimulation
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Hemodynamic responses in human multisensory and auditory association cortex to purely visual stimulation

机译:人类多感觉和听觉联想皮层对纯视觉刺激的血流动力学响应

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Background Recent findings of a tight coupling between visual and auditory association cortices during multisensory perception in monkeys and humans raise the question whether consistent paired presentation of simple visual and auditory stimuli prompts conditioned responses in unimodal auditory regions or multimodal association cortex once visual stimuli are presented in isolation in a post-conditioning run. To address this issue fifteen healthy participants partook in a "silent" sparse temporal event-related fMRI study. In the first (visual control) habituation phase they were presented with briefly red flashing visual stimuli. In the second (auditory control) habituation phase they heard brief telephone ringing. In the third (conditioning) phase we coincidently presented the visual stimulus (CS) paired with the auditory stimulus (UCS). In the fourth phase participants either viewed flashes paired with the auditory stimulus (maintenance, CS-) or viewed the visual stimulus in isolation (extinction, CS+) according to a 5:10 partial reinforcement schedule. The participants had no other task than attending to the stimuli and indicating the end of each trial by pressing a button. Results During unpaired visual presentations (preceding and following the paired presentation) we observed significant brain responses beyond primary visual cortex in the bilateral posterior auditory association cortex (planum temporale, planum parietale) and in the right superior temporal sulcus whereas the primary auditory regions were not involved. By contrast, the activity in auditory core regions was markedly larger when participants were presented with auditory stimuli. Conclusion These results demonstrate involvement of multisensory and auditory association areas in perception of unimodal visual stimulation which may reflect the instantaneous forming of multisensory associations and cannot be attributed to sensation of an auditory event. More importantly, we are able to show that brain responses in multisensory cortices do not necessarily emerge from associative learning but even occur spontaneously to simple visual stimulation.
机译:背景技术在猴子和人类的多感官知觉过程中,视觉和听觉联想皮层之间紧密耦合的最新发现提出了一个问题,即一旦视觉刺激出现,简单视觉和听觉刺激的一致配对呈现是否会在单峰听觉区域或多峰联想皮层中引起条件性反应。在后处理运行中隔离。为了解决这个问题,十五名健康参与者参加了一项“沉默的”,与时间事件相关的稀疏性功能磁共振成像研究。在第一个(视觉控制)习惯阶段中,向他们展示了短暂的红色闪烁视觉刺激。在第二个(听觉控制)习惯阶段,他们听到短暂的电话铃声。在第三阶段(调节阶段),我们巧合地提出了视觉刺激(CS)和听觉刺激(UCS)配对。在第四阶段,参与者根据5:10的部分强化时间表,观看了与听觉刺激配对的闪光(维护,CS-),或单独观看了视觉刺激(消光,CS +)。参与者除了参加刺激并通过按下按钮指示每次试验的结束之外,没有其他任务。结果在不成对的视觉表现(配对表现之前和之后)中,我们观察到了在双侧后听觉联想皮层(颞侧平顶,平顶皮层皮层)和右上颞沟中主要视觉皮层以外的重要大脑反应,而初级听觉区域却没有参与。相比之下,当参与者受到听觉刺激时,在听觉核心区域的活动明显更大。结论这些结果表明,多感觉和听觉联想区域参与了单峰视觉刺激的感知,这可能反映了多感觉联想的瞬时形成,不能归因于听觉事件的感觉。更重要的是,我们能够证明,多感觉皮层的大脑反应并不一定来自联想学习,而是自发地发生于简单的视觉刺激。

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