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US-German Research Proposal: Neural Dynamics of the Integration of Egocentric and Allocentric Cues in the Formation of Spatial Maps During Fully-Mobile Human Navigation

US-German Research Proposal: Neural Dynamics of the Integration of Egocentric and Allocentric Cues in the Formation of Spatial Maps During Fully-Mobile Human Navigation
美德研究计划:在完全移动的人类导航过程中,自我中心和异中心线索整合形成空间地图的神经动力学
批准号:
1516107
负责人:
Scott Makeig
金额:
$50.47万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2015
资助国家:
美国
项目状态:
已结题
起止时间:
2015-12-01 至 2018-11-30

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中文摘要
翻译
我们如何在一个新的城市、建筑物或其他环境中学习我们的方式?空间学习发生在我们整合视觉,听觉和其他感官印象时,我们在新的环境中移动。这个合作项目将研究人类参与者在积极探索新型实验室迷宫时的大脑动力学。我们的目标是观察和建模,第一次,分布式的大脑动力学,支持空间学习在积极的人类导航。为此,研究人员将使用一种原始的、非侵入性的“移动的脑/体成像”(MoBI)数据记录方法,该方法结合了同时进行的全身运动捕捉和脑电(EEG或“脑波”)记录。先进的信号处理方法将允许他们使用非侵入性记录的头皮EEG数据,以跟踪大脑皮层内的脑电活动的时间过程,因为#8232;受试者积极探索计算机定义的迷宫。除了将新方法和软件引入认知神经科学领域外,该项目还可以改进生活和工作环境的设计,开发新的有效方法来提高儿童和空间残疾人的空间导航能力,指导更好地培训和评估第一响应者操作,使远程观察车辆更有效地操作,并促进老年人保持空间定向能力的方法的发展。该项目将有三个技术目标:1)为了进一步开发和利用一种新的计算方法来研究自由移动个体的脑源网络动力学,2)观察和建模支持3-D空间中的物理导航的瞬时皮层网络交互,以及3)检查关于物理环境的空间结构的感觉信息在多大程度上在支持模态特异性与超模态的大脑网络中被处理,模态信息处理为了实现这些目标,该项目将利用合作者的独特优势和研究人员开创性的MoBI实验室的独特设施。该项目将使用一种新的“稀疏AR”(感知稀疏增强现实)方法,其中有关参与者空间环境的信息以声音或光线的短暂爆发的形式传递。Sparse-AR方法将允许对当我们接收和整合有关空间环境不熟悉或熟悉特征的新证据时我们的大脑活动如何变化进行建模。一个配套项目正在由联邦教育和研究部资助,德国(BMBF)。
英文摘要
How do we learn our way around a new city, building, or other environment? Spatial learning occurs as we integrate the visual, auditory, and other sensory impressions we gather as we move through the new environment. This collaborative project will investigate the brain dynamics of human participants as they actively navigate new types of laboratory mazes. The goal is to observe and model, for the first time, the distributed brain dynamics that support spatial learning during active human navigation. To do this, the investigators will use an original, non-invasive "mobile brain/body imaging" (MoBI) data recording approach that combines simultaneous full body motion capture and brain electrical (EEG or "brainwave") recording. Advanced signal processing methods will allow them to use non-invasively recorded scalp EEG data to follow the time courses of electrical brain activity within the cerebral cortex as
subjects actively explore computer-defined mazes. Beyond introducing new methods and software to the field of cognitive neuroscience, the project could enable improved design of living and work environments, development of new and effective approaches to improving spatial navigation abilities of children and people with spatial disabilities, guide better training for and evaluation of first responder operations, enable more effective operation of remote observation vehicles, and spur development of methods to maintain spatial orienting abilities in the elderly.The project will have three technical objectives: 1) To further develop and exploit a new computational approach to studying brain source network dynamics of freely moving individuals, 2) to observe and model transient cortical network interactions supporting physical navigation in 3-D space, and 3) to examine to what extent sensory information about the spatial structure of the physical environment is processed in brain networks that support modality-specific vs. supra-modal information processing. To accomplish these objectives, the project will capitalize on unique strengths of the collaborators and the unique facilities available in the investigators' pioneering MoBI laboratories. The project will use a novel "Sparse-AR" (perceptually sparse augmented-reality) approach in which information about the participant's spatial environment is delivered in the form of brief bursts of sound or light. The Sparse-AR approach will allow modeling of how our brain activities change as we receive and integrate new bits of evidence about unfamiliar or familiar features of the spatial environment.A companion project is being funded by the Federal Ministry of Education and Research, Germany (BMBF).
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Multimodal Dynamic Imaging of Human Brain Activity
  • 批准号:
    0613595
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $57.5万
  • 财政年份:
    2006
  • 负责人:
    Scott Makeig
  • 依托单位:
海外基金