首页> 外文期刊>The European Journal of Neuroscience >Role of the anterior insular cortex in integrative causal signaling during multisensory auditory-visual attention
【24h】

Role of the anterior insular cortex in integrative causal signaling during multisensory auditory-visual attention

机译:前题皮层在多思奇听觉视觉关注期间的综合因果传导中的作用

获取原文
获取原文并翻译 | 示例
           

摘要

Coordinated attention to information from multiple senses is fundamental to our ability to respond to salient environmental events, yet little is known about brain network mechanisms that guide integration of information from multiple senses. Here we investigate dynamic causal mechanisms underlying multisensory auditory-visual attention, focusing on a network of right-hemisphere frontal-cingulate-parietal regions implicated in a wide range of tasks involving attention and cognitive control. Participants performed three oddball' attention tasks involving auditory, visual and multisensory auditory-visual stimuli during fMRI scanning. We found that the right anterior insula (rAI) demonstrated the most significant causal influences on all other frontal-cingulate-parietal regions, serving as a major causal control hub during multisensory attention. Crucially, we then tested two competing models of the role of the rAI in multisensory attention: an integrated' signaling model in which the rAI generates a common multisensory control signal associated with simultaneous attention to auditory and visual oddball stimuli versus a segregated' signaling model in which the rAI generates two segregated and independent signals in each sensory modality. We found strong support for the integrated, rather than the segregated, signaling model. Furthermore, the strength of the integrated control signal from the rAI was most pronounced on the dorsal anterior cingulate and posterior parietal cortices, two key nodes of saliency and central executive networks respectively. These results were preserved with the addition of a superior temporal sulcus region involved in multisensory processing. Our study provides new insights into the dynamic causal mechanisms by which the AI facilitates multisensory attention.
机译:协调对来自多种感官的信息的关注是我们对突出环境事件的能力的基础,然而,关于从多种感官的信息集成信息的脑网络机制知之甚少。在这里,我们调查了动态的因果机制潜视 - 视觉关注的动态因果机制,专注于右半球正面 - 刺痛 - 顶点地区的网络涉及涉及关注和认知控制的广泛任务。参与者在FMRI扫描期间执行了涉及听觉,视觉和多思维听觉视觉刺激的三个古怪的关注任务。我们发现,右前肠(RAI)展示了对所有其他额叉状 - 顶点地区最显着的因果影响,作为多思科关注期间的主要因果控制枢纽。至关重要的是,我们测试了两种竞争模型的竞争模型,以多思考的关注:一个集成的'信令模型,其中RAI产生了与同时注意听觉和视觉奇怪刺激的共同的多思考控制信号与隔离的'信令模型相关联其中RAI在每个感官模态中产生两个隔离和独立信号。我们发现对集成而不是隔离的信号模型的强大支持。此外,来自RAI的集成控制信号的强度在背侧铰接和后部皮质后部的两个关键节点分别是显着和中央行政网络的两个关键节点。这些结果通过添加了涉及多误致敏感处理的优越的颞沟区域。我们的研究提供了对AI促进多思考的动态因果机制的新见解。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号