Yang Siwei, Köhler Daniela, Teller Kathrin, Cremer Thomas, Le Baccon Patricia, Heard Edith, Eils Roland, Rohr Karl
Biomedical Computer Vision Group, Dept. Theoretical Bioinformatics, DKFZ Heidelberg, Germany.
Med Image Comput Comput Assist Interv. 2006;9(Pt 1):907-14. doi: 10.1007/11866565_111.
We present an intensity-based non-rigid registration approach for normalizing 3D multi-channel microscopy images of cell nuclei. A main problem with cell nuclei images is that the intensity structure of different nuclei differs very much, thus an intensity-based registration scheme cannot be used directly. Instead, we first perform a segmentation of the images, smooth them by a Gaussian filter, and then apply an intensity-based algorithm. To improve the convergence rate of the algorithm, we propose an adaptive step length optimization scheme and also employ a multi-resolution scheme. Our approach has been successfully applied using 2D cell-like synthetic images, 3D phantom images as well as 3D multichannel microscopy images representing different chromosome territories and gene regions (BACs). We also describe an extension of our approach which is applied for the registration of 3D+t (4D) image series of moving cell nuclei.
我们提出了一种基于强度的非刚性配准方法,用于对细胞核的三维多通道显微镜图像进行归一化处理。细胞核图像的一个主要问题是不同细胞核的强度结构差异很大,因此基于强度的配准方案不能直接使用。相反,我们首先对图像进行分割,用高斯滤波器对其进行平滑处理,然后应用基于强度的算法。为了提高算法的收敛速度,我们提出了一种自适应步长优化方案,并采用了多分辨率方案。我们的方法已成功应用于二维细胞状合成图像、三维体模图像以及代表不同染色体区域和基因区域(BACs)的三维多通道显微镜图像。我们还描述了我们方法的一种扩展,该扩展用于移动细胞核的三维+t(四维)图像序列的配准。