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使用自适应核回归构建一致的高清晰度时空大脑发育图谱。

Construction of a consistent high-definition spatio-temporal atlas of the developing brain using adaptive kernel regression.

机构信息

Biomedical Image Analysis (BioMedIA) Group, Department of Computing, Imperial College London, and Centre for the Developing Brain, Hammersmith Hospital, London, UK.

出版信息

Neuroimage. 2012 Feb 1;59(3):2255-65. doi: 10.1016/j.neuroimage.2011.09.062. Epub 2011 Oct 1.

Abstract

Medical imaging has shown that, during early development, the brain undergoes more changes in size, shape and appearance than at any other time in life. A better understanding of brain development requires a spatio-temporal atlas that characterizes the dynamic changes during this period. In this paper we present an approach for constructing a 4D atlas of the developing brain, between 28 and 44 weeks post-menstrual age at time of scan, using T1 and T2 weighted MR images from 204 premature neonates. The method used for the creation of the average 4D atlas utilizes non-rigid registration between all pairs of images to eliminate bias in the atlas toward any of the original images. In addition, kernel regression is used to produce age-dependent anatomical templates. A novelty in our approach is the use of a time-varying kernel width, to overcome the variations in the distribution of subjects at different ages. This leads to an atlas that retains a consistent level of detail at every time-point. Comparisons between the resulting atlas and atlases constructed using affine and non-rigid registration are presented. The resulting 4D atlas has greater anatomic definition than currently available 4D atlases created using various affine and non-rigid registration approaches, an important factor in improving registrations between the atlas and individual subjects. Also, the resulting 4D atlas can serve as a good representative of the population of interest as it reflects both global and local changes. The atlas is publicly available at www.brain-development.org.

摘要

医学成像显示,在早期发育过程中,大脑在大小、形状和外观上的变化比一生中的任何其他时候都要多。更好地理解大脑发育需要一个时空图谱,以描述这段时间的动态变化。在本文中,我们提出了一种方法,用于构建一个从 28 周到 44 周龄(扫描时的妊娠周龄)的发育中脑的 4D 图谱,使用了 204 名早产儿的 T1 和 T2 加权磁共振图像。创建平均 4D 图谱的方法使用所有图像对之间的非刚性配准,以消除图谱对任何原始图像的偏差。此外,核回归用于生成与年龄相关的解剖模板。我们方法的新颖之处在于使用时变核宽度,以克服不同年龄受试者分布的变化。这导致在每个时间点都保留一致的细节水平的图谱。呈现了与使用仿射和非刚性配准方法构建的图谱进行比较的结果。与使用各种仿射和非刚性配准方法构建的现有 4D 图谱相比,生成的 4D 图谱具有更高的解剖定义,这是改善图谱与个体受试者之间配准的重要因素。此外,生成的 4D 图谱可以作为感兴趣人群的良好代表,因为它反映了全局和局部变化。该图谱可在 www.brain-development.org 上公开获取。

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