Lv Shengqing, Chen Yimin, Li Zeyu, Lu Jiahui, Gao Mingke, Lu Rongrong
1 School of Computer Engineering and Science, Shanghai University , Shanghai, China .
2 Computer Center Ruijin Hospital, Shanghai Jiao Tong University School of Medicine , Shanghai, China .
J Comput Biol. 2017 Nov;24(11):1112-1124. doi: 10.1089/cmb.2017.0038. Epub 2017 Jul 6.
Medical image three-dimensional (3D) interpolation is an important means to improve the image effect in 3D reconstruction. In image processing, the time-frequency domain transform is an efficient method. In this article, several time-frequency domain transform methods are applied and compared in 3D interpolation. And a Sobel edge detection and 3D matching interpolation method based on wavelet transform is proposed. We combine wavelet transform, traditional matching interpolation methods, and Sobel edge detection together in our algorithm. What is more, the characteristics of wavelet transform and Sobel operator are used. They deal with the sub-images of wavelet decomposition separately. Sobel edge detection 3D matching interpolation method is used in low-frequency sub-images under the circumstances of ensuring high frequency undistorted. Through wavelet reconstruction, it can get the target interpolation image. In this article, we make 3D interpolation of the real computed tomography (CT) images. Compared with other interpolation methods, our proposed method is verified to be effective and superior.
医学图像三维(3D)插值是改善3D重建中图像效果的重要手段。在图像处理中,时频域变换是一种有效的方法。本文将几种时频域变换方法应用于3D插值并进行比较。并提出了一种基于小波变换的Sobel边缘检测与3D匹配插值方法。我们在算法中结合了小波变换、传统匹配插值方法和Sobel边缘检测。此外,利用了小波变换和Sobel算子的特性。它们分别处理小波分解的子图像。在保证高频不失真的情况下,将Sobel边缘检测3D匹配插值方法应用于低频子图像。通过小波重构,可以得到目标插值图像。本文对实际计算机断层扫描(CT)图像进行了3D插值。与其他插值方法相比,验证了本文所提方法的有效性和优越性。