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Development of a digital human brain atlas.

机译:数字人脑图集的发展。

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摘要

A digital human brain atlas plays a crucial role in brain mapping for the neuroimaging community. Traditionally, a digital brain atlas contains anatomical information, while structural properties are not presented. Recent development of diffusion tensor imaging (DTI) allows for unique acquisition of information regarding the microstructure of brain tissue.;The accuracy of the spatial normalization and subsequent comparisons is contingent upon the use of a DTI template representative of the micro-architecture of the human brain. The previously developed "IIT DTI brain template" was produced in ICBM-152 space. However, low-dimensional registration was used, leading to a mismatch of DTI information across subjects and a mismatch of the anatomy in the IIT and ICBM-152 templates. In this thesis, a significantly improved DTI brain template in ICBM-152 space was developed.;The accuracy of spatial normalization in DTI data depends on the quality of data, the effectiveness of the registration technique, and the characteristics of the DTI brain template. Both study-specific and standardized human brain DTI templates exist. The role of both types of templates in spatial normalization warrants further investigation. In this thesis, the effect of standardized and study-specific human brain DTI templates on the accuracy of spatial normalization was investigated.;Conventional atlas-based white matter (WM) segmentation is widely used for automated selection of ROI on DTI investigations. However, it suffers from misregistration and inaccurate spatial transformation across subjects. Skeletonized atlas-based segmentation was recently adopted in several DTI studies. However, the use of skeletonized atlas-based segmentation in studies of WM ROIs has not yet been evaluated. In this thesis, the effects of conventional and skeletonized atlas-based segmentation on DTI investigations of WM ROIs were compared.;An accurate digital human brain atlas containing different types of high quality MRI data and anatomical labels for both WM and gray matter (GM) in standardized space is desirable for a variety of brain imaging studies. The IIT2 DTI template was developed recently in ICBM-152 space. In this thesis, the quality of the IIT2 template was further enhanced. Furthermore, this publicly available resource was extended into a comprehensive GM atlas of the human brain.
机译:数字人脑图谱在神经成像社区的脑成像中起着至关重要的作用。传统上,数字脑图集包含解剖学信息,而未显示结构特性。弥散张量成像(DTI)的最新发展允许唯一获取有关脑组织微观结构的信息。;空间归一化和后续比较的准确性取决于使用代表人类微结构的DTI模板脑。先前开发的“ IIT DTI脑模板”是在ICBM-152空间中生产的。但是,使用的是低维配准,从而导致跨学科的DTI信息不匹配,以及IIT和ICBM-152模板中的解剖结构不匹配。本文研究了ICBM-152空间中DTI脑模板的显着改进。DTI数据中空间归一化的准确性取决于数据的质量,配准技术的有效性以及DTI脑模板的特征。研究专用和标准化的人脑DTI模板都存在。两种类型的模板在空间归一化中的作用值得进一步研究。本文研究了标准化和研究专用的人脑DTI模板对空间归一化准确性的影响。;传统的基于图集的白质(WM)分割被广泛用于DTI研究中的ROI的自动选择。但是,它遭受配准不正确和跨对象空间转换不准确的困扰。最近,在一些DTI研究中采用了基于骨架图谱的分割。但是,尚未评估在WM ROIs研究中使用基于骨架的图集分割的方法。本文比较了传统的和基于骨架的图集分割对WM ROI的DTI研究的影响。;准确的数字人脑图集,其中包含不同类型的高质量MRI数据以及WM和灰质(GM)的解剖学标记在标准化空间中进行各种大脑成像研究是合乎需要的。 IIT2 DTI模板是最近在ICBM-152空间中开发的。本文进一步提高了IIT2模板的质量。此外,这种公开可用的资源已扩展到人脑的全面GM地图集。

著录项

  • 作者

    Zhang, Shengwei.;

  • 作者单位

    Illinois Institute of Technology.;

  • 授予单位 Illinois Institute of Technology.;
  • 学科 Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 116 p.
  • 总页数 116
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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