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中文摘要
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项目摘要:CORE 4,脑注册和路径追踪 -- 工作记忆是一种在脑海中暂时记住多条信息以进行操作的能力。 几乎是所有认知能力的核心。这一多组分的研究项目旨在全面研究 剖析这种能力在多个大脑区域的神经回路机制。要研究的行为是。 一种基于感官证据的逐渐积累的决策任务,因此依赖于。 关于工作记忆。要充分理解这种行为与大脑功能的关系,需要。 多层次的解释:从特定区域的神经活动到这些区域如何在大脑中相互作用 通过特定路径的全脑网络。这些级别的分析需要不同的技术方法。 它们通常很难严格地相互关联。这一核心将在以下方面促进严密性和可重复性 拟议的研究通过产生一个解剖框架来标准化和比较各种类型。 将被收集的数据。该设施将在建立一个广泛的综合设施方面发挥几个基本功能 项目的结构。首先,它将产生标准化的功能图,用于准确地。 在细胞分辨率成像或失活研究之前确定视觉皮质区域的边界。 其次,它将把所有被研究的大脑区域登记到包括连通性和安全性在内的解剖学背景中。 功能意义。将使用自动细胞识别方法来调查直接成像的区域。 和间接连接的区域,并对神经元和其他感兴趣的对象进行分类。第三,它将支持。 跨突触的长距离追踪,以确定涉及的遥远大脑区域之间的连接路径。 在证据积累方面。第四,它将把这些信息组织在一个关系数据库中,该数据库将所有 实验,以一种可以与神经科学研究社区共享的形式。作为可持续发展的技术 随着时间的推移,功能映射、注册和跟踪的进步,这个设施将评估新的方法,采用 这将大大提高核心的能力,并培训项目人员使用这些能力。拍下了。 总之,这些功能对于将记录和扰乱的神经活动置于全脑范围内是必不可少的。 解剖学背景,这将使个人实验和实验产生的信息能够整合。 技术转化为一个连贯的理论框架。
英文摘要
Project Summary: Core 4, Brain Registration and Pathway Tracing    Working memory, the ability to temporarily hold multiple pieces of information in mind for manipulation, is  central to virtually all cognitive abilities. This multi-component research project aims to comprehensively  dissect the neural circuit mechanisms of this ability across multiple brain areas. The behavior to be studied is  a type of decision-making task that is based on the gradual accumulation of sensory evidence and thus relies  on working memory. A full understanding of how this behavior relates to this brain function requires  explanation at multiple levels: from neural activity in particular regions to how those regions interact in  brain-wide networks via specific pathways. These levels of analysis require distinct technical approaches,  which are often difficult to relate to one another rigorously. This Core will promote rigor and reproducibility in  the proposed research by producing an anatomical framework to standardize and compare the various types  of data that will be collected. The facility will serve several essential functions in building a broad integrative  structure for the project. First, it will produce standardized functional maps that will be used to accurately  determine the boundaries of visual cortical regions before cellular-resolution imaging or inactivation studies.  Second, it will register all studied brain areas into an anatomical context that includes connectivity and  functional significance. Automated cell-recognition methods will be used to survey directly imaged regions  and indirectly connected regions, and to classify neurons and other objects of interest. Third, it will support  long-distance tracing across synapses to identify paths of connectivity between distant brain regions involved  in evidence accumulation. Fourth, it will organize this information in a relational database that links all the  experiments, in a format that can be shared with the neuroscience research community. As technologies for  functional mapping, registration, and tracing advance over time, this facility will evaluate new methods, adopt  those that will substantially improve the Core’s capabilities, and train project personnel in their use. Taken  together, these functions are essential for placing recorded and perturbed neural activity into a brain-wide  anatomical context, which will enable the integration of information produced by individual experiments and  techniques into a coherent theoretical framework.
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C4: Neuroanatomy
  • 批准号:
    10705971
  • 项目类别:
  • 资助金额:
    $50.22万
  • 财政年份:
    2023
  • 负责人:
    Samuel Sheng-Hung Wang
  • 依托单位:
Brain Registration and Histology
  • 批准号:
    9983195
  • 项目类别:
  • 资助金额:
    $16.97万
  • 财政年份:
    2017
  • 负责人:
    Samuel Sheng-Hung Wang
  • 依托单位:
Transcending dynamic and kinetic limits for neuronal calcium sensing
  • 批准号:
    8912632
  • 项目类别:
  • 资助金额:
    $24.3万
  • 财政年份:
    2015
  • 负责人:
    Samuel Sheng-Hung Wang
  • 依托单位:
Transcending dynamic and kinetic limits for neuronal calcium sensing
  • 批准号:
    8999033
  • 项目类别:
  • 资助金额:
    $20.25万
  • 财政年份:
    2015
  • 负责人:
    Samuel Sheng-Hung Wang
  • 依托单位:
海外基金