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首页> 外文期刊>Brain imaging and behavior >Joint representation of connectome-scale structural and functional profiles for identification of consistent cortical landmarks in macaque brain
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Joint representation of connectome-scale structural and functional profiles for identification of consistent cortical landmarks in macaque brain

机译:结合尺度结构和功能谱的联合表示,用于鉴定猕猴脑中一致的皮质地标

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摘要

Discovery and representation of common structural and functional cortical architectures has been a significant yet challenging problem for years. Due to the remarkable variability of structural and functional cortical architectures in human brain, it is challenging to jointly represent a common cortical architecture which can comprehensively encode both structure and function characteristics. In order to better understand this challenge and considering that macaque monkey brain has much less variability in structure and function compared with human brain, in this paper, we propose a novel computational framework to apply our DICCCOL (Dense Individualized and Common Connectivity-based Cortical Landmarks) and HAFNI (Holistic Atlases of Functional Networks and Interactions) frameworks on macaque brains, in order to jointly represent structural and functional connectome-scale profiles for identification of a set of consistent and common cortical landmarks across different macaque brains based on multimodal DTI and resting state fMRI (rsfMRI) data. Experimental results demonstrate that 100 consistent and common cortical landmarks are successfully identified via the proposed framework, each of which has reasonably accurate anatomical, structural fiber connection pattern, and functional correspondences across different macaque brains. This set of 100 landmarks offer novel insights into the structural and functional cortical architectures in macaque brains.
机译:常见结构和功能皮质架构的发现和表示在多年来一直是一个重要而有挑战性的问题。由于人类大脑中结构和功能性皮质架构的显着变化,它挑战,共同代表一个可以全面编码结构和功能特征的常见皮质结构。为了更好地了解这一挑战,并考虑到猕猴大脑的结构和功能变化较小,与人类大脑相比,我们提出了一种新颖的计算框架来应用我们的DICCOL(密集的个性化和基于共同的连接性皮质地标。 )和Hafni(功能网络和相互作用的整体地图集)在猕猴上,为了共同代表结构和功能的连接尺度型材,用于识别基于多模式DTI和休息的不同猕猴的一组一致和常见的皮质地标。状态FMRI(RSFMRI)数据。实验结果表明,通过所提出的框架成功识别了100个一致和常见的皮质地标,每个框架具有合理准确的解剖学,结构纤维连接模式和不同猕猴的功能对应关系。这套100个地标在猕猴的结构和功能皮层建筑中提供了新的洞察力。

著录项

  • 来源
    《Brain imaging and behavior 》 |2019年第5期| 共17页
  • 作者单位

    Univ Georgia Cort Architecture Imaging &

    Discovery Lab Dept Comp Sci Boyd GSRC 420 Athens GA;

    Univ Georgia Cort Architecture Imaging &

    Discovery Lab Dept Comp Sci Boyd GSRC 420 Athens GA;

    Univ Georgia Cort Architecture Imaging &

    Discovery Lab Dept Comp Sci Boyd GSRC 420 Athens GA;

    Univ Georgia Cort Architecture Imaging &

    Discovery Lab Dept Comp Sci Boyd GSRC 420 Athens GA;

    Univ Georgia Cort Architecture Imaging &

    Discovery Lab Dept Comp Sci Boyd GSRC 420 Athens GA;

    Univ Georgia Cort Architecture Imaging &

    Discovery Lab Dept Comp Sci Boyd GSRC 420 Athens GA;

    Univ Georgia Cort Architecture Imaging &

    Discovery Lab Dept Comp Sci Boyd GSRC 420 Athens GA;

    Northwestern Polytech Univ Sch Automat Xian Shaanxi Peoples R China;

    Emory Univ Sch Med Dept Psychiat &

    Behav Sci Atlanta GA 30322 USA;

    Emory Univ Sch Med Dept Psychiat &

    Behav Sci Atlanta GA 30322 USA;

    UC Riverside Dept Bioengn Riverside CA 92521 USA;

    Univ Georgia Cort Architecture Imaging &

    Discovery Lab Dept Comp Sci Boyd GSRC 420 Athens GA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学与精神病学 ;
  • 关键词

    Cortical landmarks; DTI; Resting state fMRI; Joint representation of structure and function; Rhesus monkey;

    机译:皮质地标;DTI;休息状态FMRI;结构和功能的联合表示;恒河猴;

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