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自动识别脑 MRI 标准层面定位的标志点。

Automatic identification of landmarks for standard slice positioning in brain MRI.

机构信息

Department of Informatics, Yildiz Technical University, Istanbul, Turkey.

出版信息

J Magn Reson Imaging. 2011 Sep;34(3):499-510. doi: 10.1002/jmri.22717. Epub 2011 Jul 12.

Abstract

PURPOSE

To demonstrate a novel automatic slice-positioning technique based on three new anatomical landmarks and to standardize prospective scans by lowering rotational and translational variances.

MATERIALS AND METHODS

After defining the interpeduncular fossa corner and the eyeball centers as landmarks, they are manually labeled on 25 different T1 MRI scans. New scans are produced according to the Eyeball centers-Mesencephalon (EM) plane. The comparison of angular deviations at EM and original scans is based on the comparison of rotational angles according to manually labeled Talairach points on both scans. The same variability comparison is also done with automatically captured landmarks to see the effects of segmentation errors.

RESULTS

Analysis of variances proved significant lowering of intersubject variability for pitch and yaw angles (P(pitch) < 0.005, P(yaw) < 0.001), which are the two basic causes of misalignments. Automatic segmentation accuracy is proved by paired t-test and significance tests.

CONCLUSION

A new field of view and slice orientation proposed by the EM technique will have fixed the follow-up scans by significantly lowering the rotational and translational variances. The EM technique will precisely match the intrasubject scans and produce better standardized intersubject scans. The distinguishing features of landmarks are sufficient for robust automatic capture.

摘要

目的

展示一种基于三个新解剖学标志的新型自动切片定位技术,并通过降低旋转和平移方差来规范前瞻性扫描。

材料和方法

在定义脚间窝角和眼球中心为标志后,手动标记在 25 个不同的 T1 MRI 扫描上。根据眼球中心-中脑(EM)平面生成新的扫描。根据手动标记在两个扫描上的 Talairach 点的旋转角度比较,比较 EM 和原始扫描的角度偏差。还对自动捕获的标志进行了相同的可变性比较,以查看分割错误的影响。

结果

方差分析证明,俯仰角和偏航角的受试者间变异性显著降低(P(pitch) < 0.005,P(yaw) < 0.001),这是两个导致失准的基本原因。通过配对 t 检验和显著性检验证明了自动分割的准确性。

结论

EM 技术提出的新视野和切片方向将通过显著降低旋转和平移方差来固定后续扫描。EM 技术将精确匹配受试者内扫描,并产生更好的标准化受试者间扫描。标志的特征足以进行稳健的自动捕获。

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