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人脑肿瘤磁共振成像中的多指数质子自旋-自旋弛豫

Multiexponential proton spin-spin relaxation in MR imaging of human brain tumors.

作者信息

Schad L R, Brix G, Zuna I, Härle W, Lorenz W J, Semmler W

机构信息

Institute of Radiology and Pathophysiology, German Cancer Research Center, Heidelberg.

出版信息

J Comput Assist Tomogr. 1989 Jul-Aug;13(4):577-87. doi: 10.1097/00004728-198907000-00005.

Abstract

In vivo measurements of proton relaxation processes in human brain tumors have been performed by magnetic resonance (MR) imaging using a whole-body superconductive MR scanner, operating at 1.5 T. The T1 and T2 relaxation time measurements were based on a combined Carr-Purcell/Carr-Purcell-Meiboom-Gill sequence with two interleaved repetition times and 32 echoes. First, comparative measurements in the imager and with the spectrometer of relaxation times were performed on phantoms containing fluids of different T1 and T2 to evaluate accuracy. A maximum deviation of approximately 10% was found. Multislicing with a gap width of one slice thickness influenced the accuracy of T1 relaxation measurement. A gap width of at least two times the slice thickness was necessary for reliable determination of T1. No influence on T2 values was observed by multislicing. Second, in human head imaging the multiexponential behavior of the T2 decay curves has been analyzed in each pixel, where the mean square deviation has been used as a criterion to discriminate between mono- and biexponential behavior. Mean values of monoexponential T1 and multiexponential T2 relaxation data for white matter, gray matter, CSF, edema, and tumor were sampled in 12 patients with brain tumors. T2 showed monoexponential behavior in white and gray matter, whereas CSF, edema, and tumor showed distinct biexponentiality. The biexponential analysis generally yields "fast" and "slow" components with T2f = 80 +/- 17 ms and T2s = 2,030 +/- 210 ms for CSF (partial volume effect), T2f = 104 +/- 25 ms and T2s = 677 +/- 152 ms for edematous tissues, T2f = 97 +/- 19 ms and T2s = 756 +/- 99 ms for tumor tissues, respectively. Using a stepwise discriminant analysis by forward selection, the two best discriminating parameters of the multiexponential relaxation analysis for each pair of classification groups have been selected. For the discrimination of edematous and tumor tissues a retrospective overall accuracy of 94% has been found.

摘要

利用一台全身超导磁共振扫描仪在1.5T的磁场强度下,通过磁共振成像对人脑肿瘤中的质子弛豫过程进行了体内测量。T1和T2弛豫时间测量基于一个组合的Carr-Purcell/Carr-Purcell-Meiboom-Gill序列,该序列有两个交错的重复时间和32个回波。首先,在成像仪中以及与光谱仪一起对含有不同T1和T2的流体的体模进行弛豫时间的对比测量,以评估准确性。发现最大偏差约为10%。间隔宽度为一个切片厚度的多层切片会影响T1弛豫测量的准确性。为可靠确定T1,间隔宽度至少应为切片厚度的两倍。多层切片未观察到对T2值有影响。其次,在人体头部成像中,对每个像素的T2衰减曲线的多指数行为进行了分析,其中均方差被用作区分单指数和双指数行为的标准。在12例脑肿瘤患者中采集了白质、灰质、脑脊液、水肿和肿瘤的单指数T1和多指数T2弛豫数据的平均值。T2在白质和灰质中表现为单指数行为,而脑脊液、水肿和肿瘤表现出明显的双指数性。双指数分析通常产生“快”和“慢”成分,脑脊液(部分容积效应)的T2f = 80±17ms和T2s = 2030±21ms,水肿组织的T2f = 104±25ms和T2s = 677±152ms,肿瘤组织的T2f = 97±19ms和T2s = 756±99ms。通过向前选择的逐步判别分析,为每对分类组选择了多指数弛豫分析的两个最佳判别参数。对于水肿组织和肿瘤组织的鉴别,回顾性总体准确率为94%。

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