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将磁共振脑图像分割为脑脊液空间、白质和灰质。

Segmentation of MR brain images into cerebrospinal fluid spaces, white and gray matter.

作者信息

Lim K O, Pfefferbaum A

机构信息

Veterans Administration Medical Center, Palo Alto, CA 94304.

出版信息

J Comput Assist Tomogr. 1989 Jul-Aug;13(4):588-93. doi: 10.1097/00004728-198907000-00006.

Abstract

An interactive computer method for quantifying CSF, white matter, and gray matter in magnetic resonance (MR) axial brain scans is presented. A stripping algorithm is used to remove the skull and scalp from each axial section. The images are then filtered to correct for radiofrequency inhomogeneity image artifacts. Late echo images are subtracted from or added to early echo images to enhance fluid/tissue and gray/white tissue contrast, respectively. Thresholds for fluid/tissue and gray/white separation are set interactively. A boundary pixel locking algorithm is used to handle ambiguities due to partial voluming between the fluid and tissue compartments. The MR brain scans from five healthy, young, normal men were obtained using a standard neuroanatomical reference technique. These data were processed and percentages computed for fluid, gray matter and white matter compartments. The gray/white ratios compare favorably with those determined in a published postmortem brain study.

摘要

本文介绍了一种用于在磁共振(MR)轴向脑部扫描中对脑脊液、白质和灰质进行定量分析的交互式计算机方法。使用一种剥离算法从每个轴向切片中去除颅骨和头皮。然后对图像进行滤波,以校正射频不均匀性图像伪影。将晚期回波图像从早期回波图像中减去或加到早期回波图像上,分别增强液体/组织和灰质/白质的对比度。通过交互式设置液体/组织和灰质/白质分离的阈值。使用边界像素锁定算法处理由于液体和组织区域之间的部分容积效应导致的模糊性。采用标准神经解剖学参考技术获取了五名健康、年轻、正常男性的MR脑部扫描数据。对这些数据进行处理,并计算液体、灰质和白质区域的百分比。灰质/白质比率与已发表的死后脑部研究中确定的比率相当。

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