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Distinguishing Left or Right Temporal Lobe Epilepsy from Controls Using Fractional Anisotropy Asymmetry Analysis

机译:使用分数各向异性不对称分析将左或右颞叶癫痫与对照区分开

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摘要

This paper presents an automatic fractional anisotropy (FA) asymmetry analysis and applies it to determine the FA asymmetry (FAA) changes associated with the sides of seizure origin of patients with temporal lobe epilepsy (TLE) using diffusion tensor imaging (DTI). All the control and patient images are first normalized onto the JHU-DTI-MNI atlas using a simultaneous deformable DTI registration algorithm, and the FA images are warped accordingly. Then, the tract-based spatial statistics (TBSS) algorithm is employed to quantify the FA on white matter (WM) skeletons, which are divided into different sections by overlapping with the 102 WM regions defined by the atlas. The FAA values, i.e., the relative differences of each WM skeleton section pair, are calculated. Statistical analysis is then performed to identify the regions that significantly contributed to the group differences between control and left/right TLE, as well as between left and right TLE. The results indicate that FAA correlates with the side of seizure origin, and those of certain regions are significantly different between normal controls and left or right TLE. The quantitative results can be useful for pre-surgical evaluation of TLE patients and for better understanding of the relationship between fiber tracts with the site of origin of TLE, EEG tests, the syndromes and neural psychological responses.
机译:本文提出了一种自动分数各向异性(FA)不对称性分析,并将其应用于确定弥散张量成像(DTI)与颞叶癫痫(TLE)癫痫发作的发作侧相关的FA不对称性(FAA)变化。首先使用同步可变形DTI配准算法将所有对照和患者图像标准化到JHU-DTI-MNI地图集,然后对FA图像进行变形。然后,采用基于区域的空间统计(TBSS)算法对白质(WM)骨架上的FA进行量化,白质(WM)骨架通过与地图集定义的102个WM区域重叠而分为不同部分。计算FAA值,即每个WM骨架截面对的相对差。然后进行统计分析以识别对对照和左/右TLE之间以及左TLE和右TLE之间的组差异有重大贡献的区域。结果表明,FAA与癫痫发作的起源有关,某些区域的那些与正常对照和左或右TLE之间存在显着差异。定量结果可用于TLE患者的术前评估,以及更好地了解TLE起源部位,EEG测试,综合征和神经心理反应之间的纤维束之间的关系。

著录项

  • 来源
  • 会议地点 Beijing(CN);Beijing(CN)
  • 作者单位

    The Center for Bioengineering and Informatics and Methodist Neurological Institute,The Methodist Hospital, The Methodist Hospital Research Institute,Weill Cornell Medical College, Houston, TX;

    The Center for Bioengineering and Informatics and Methodist Neurological Institute,The Methodist Hospital, The Methodist Hospital Research Institute,Weill Cornell Medical College, Houston, TX;

    The Center for Bioengineering and Informatics and Methodist Neurological Institute,The Methodist Hospital, The Methodist Hospital Research Institute,Weill Cornell Medical College, Houston, TX;

    The Center for Bioengineering and Informatics and Methodist Neurological Institute,The Methodist Hospital, The Methodist Hospital Research Institute,Weill Cornell Medical College, Houston, TX;

    The Center for Bioengineering and Informatics and Methodist Neurological Institute,The Methodist Hospital, The Methodist Hospital Research Institute,Weill Cornell Medical College, Houston, TX;

    The Center for Bioengineering and Informatics and Methodist Neurological Institute,The Methodist Hospital, The Methodist Hospital Research Institute,Weill Cornell Medical College, Houston, TX;

    The Center for Bioengineering and Informatics and Methodist Neurological Institute,The Methodist Hospital, The Methodist Hospital Research Institute,Weill Cornell Medical College, Houston, TX;

    The Center for Bioengineering and Informatics and Methodist Neurological Institute,The Methodist Hospital, The Methodist Hospital Research Institute,Weill Cornell Medical College, Houston, TX;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医用物理学;
  • 关键词

    diffusion tensor imaging; temporal lobe epilepsy; tract-based spatial statistics; fractional anisotropy asymmetry;

    机译:扩散张量成像颞叶癫痫基于区域的空间统计;分数各向异性;

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