Suppr超能文献

基于颜色相关性的用于流体镜头相机的 Contourlet 域多带去模糊。

Contourlet domain multiband deblurring based on color correlation for fluid lens cameras.

机构信息

Video Processing Laboratory, University of California, San Diego, La Jolla, CA 92093, USA.

出版信息

IEEE Trans Image Process. 2010 Oct;19(10):2659-68. doi: 10.1109/TIP.2010.2049237. Epub 2010 Apr 26.

Abstract

Due to the novel fluid optics, unique image processing challenges are presented by the fluidic lens camera system. Developed for surgical applications, unique properties, such as no moving parts while zooming and better miniaturization than traditional glass optics, are advantages of the fluid lens. Despite these abilities, sharp color planes and blurred color planes are created by the nonuniform reaction of the liquid lens to different color wavelengths. Severe axial color aberrations are caused by this reaction. In order to deblur color images without estimating a point spread function, a contourlet filter bank system is proposed. Information from sharp color planes is used by this multiband deblurring method to improve blurred color planes. Compared to traditional Lucy-Richardson and Wiener deconvolution algorithms, significantly improved sharpness and reduced ghosting artifacts are produced by a previous wavelet-based method. Directional filtering is used by the proposed contourlet-based system to adjust to the contours of the image. An image is produced by the proposed method which has a similar level of sharpness to the previous wavelet-based method and has fewer ghosting artifacts. Conditions for when this algorithm will reduce the mean squared error are analyzed. While improving the blue color plane by using information from the green color plane is the primary focus of this paper, these methods could be adjusted to improve the red color plane. Many multiband systems such as global mapping, infrared imaging, and computer assisted surgery are natural extensions of this work. This information sharing algorithm is beneficial to any image set with high edge correlation. Improved results in the areas of deblurring, noise reduction, and resolution enhancement can be produced by the proposed algorithm.

摘要

由于独特的流体光学,流体透镜相机系统提出了独特的图像处理挑战。为手术应用而开发的,独特的特性,如在变焦时没有移动部件,并且比传统的玻璃光学更小型化,是流体透镜的优势。尽管具有这些能力,但液体透镜对不同颜色波长的不均匀反应会产生不清晰的彩色平面和模糊的彩色平面。这种反应会导致严重的轴向色差。为了在不估计点扩散函数的情况下使彩色图像去模糊,提出了一种轮廓波滤波器组系统。这个多带去模糊方法使用清晰彩色平面的信息来改善模糊的彩色平面。与传统的 Lucy-Richardson 和 Wiener 反卷积算法相比,以前基于小波的方法产生了明显提高的清晰度和减少的重影伪像。所提出的基于轮廓波的系统使用方向滤波来适应图像的轮廓。所提出的方法产生的图像具有与以前基于小波的方法相似的清晰度水平,并且鬼影伪像较少。分析了该算法将均方误差降低的条件。虽然通过使用绿色彩色平面的信息来改善蓝色彩色平面是本文的主要关注点,但这些方法可以进行调整以改善红色彩色平面。许多多波段系统,如全局映射、红外成像和计算机辅助手术,都是这项工作的自然延伸。这种信息共享算法有益于任何具有高边缘相关性的图像集。所提出的算法可以产生去模糊、降噪和分辨率增强等方面的改进结果。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验