首页> 外文期刊>Neuroradiology >T1-MPRAGE and T2-FLAIR segmentation of cortical and subcortical brain regionsan MRI evaluation study
【24h】

T1-MPRAGE and T2-FLAIR segmentation of cortical and subcortical brain regionsan MRI evaluation study

机译:皮质和皮尺脑中标的T1-Mprage和T2型扁平细分分段an MRI评估研究

获取原文
获取原文并翻译 | 示例
       

摘要

PurposeDevelopment of a warp-based automated brain segmentation approach of 3D fluid-attenuated inversion recovery (FLAIR) images and comparison to 3D T1-based segmentation.Methods3D FLAIR and 3D T1-weighted sequences of 30 healthy subjects (mean age 29.98.3years, 8 female) were acquired on the same 3T MR scanner. Warp-based segmentation was applied for volumetry of total gray matter (GM), white matter (WM), and 116 atlas regions. Segmentation results of both sequences were compared using Pearson correlation (r).ResultsCorrelation of GM segmentation results based on FLAIR and T1 was overall good for cortical structures (mean r across all cortical structures = 0.76). Comparatively weaker results were found in the occipital lobe (r=0.77), central region (mean r=0.58), basal ganglia (mean r=0.59), thalamus (r=0.30), and cerebellum (r=0.73). FLAIR segmentation underestimated volume of the central region compared to T1, but showed a better anatomic concordance with the occipital lobe on visual review and subcortical structures, when also compared to manual segmentation. Visual analysis of FLAIR-based WM segmentation revealed frequent misclassification of regions of high signal intensity as GM.Conclusion p id=Par4 Warp-based FLAIR segmentation yields comparable results to T1 segmentation for most cortical GM structures and may provide anatomically more congruent segmentation of subcortical GM structures. Selected cortical regions, especially the central region and total WM, seem to be underestimated on FLAIR segmentation.
机译:3D流体衰减反转恢复(Flair)图像的翘曲自动脑分割方法的PURPOTEVETEVENTEVELEVENTEVETMET。与3D T1的分段比较。方法3D Flair和3D T1加权序列30健康受试者(平均年龄29.98.3岁,8女性)在同一3T扫描仪上获得。应用基于翘曲的分割,用于总灰质(GM),白质(WM)和116个阿特拉斯地区的体积。使用Pearson相关性(R)进行比较两种序列的分割结果。基于Flair的G转基因转基因分割结果和T1对皮质结构的总体良好(平均r = 0.76)。在枕叶(r = 0.77)中发现了相对较弱的结果,中央区域(平均r = 0.58),基底神经节(平均r = 0.59),丘脑(r = 0.30)和小脑(r = 0.73)。与T1相比,Flair分割低估了中央区域的体积,但与手动分割相比,与视觉审查和皮尺结构的枕骨有更好的解剖结构。基于Flair的WM分割的视觉分析显示,随着GM的高信号强度的频繁错误分类。结论P ID = PAR4翘曲的翘曲的光泽分割,对大多数皮质GM结构的T1分段产生相当的结果,并且可以提供解剖学上更加全体分割的基本原理GM结构。选定的皮质区域,尤其是中央区域和总WM,似乎在Flair细分上被低估了。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号