【24h】

A color image processing pipeline for digital microscope

机译:数字显微镜的彩色图像处理管道

获取原文

摘要

Digital microscope has found wide application in the field of biology, medicine et al. A digital microscope differs from traditional optical microscope in that there is no need to observe the sample through an eyepiece directly, because the optical image is projected directly on the CCD/CMOS camera. However, because of the imaging difference between human eye and sensor, color image processing pipeline is needed for the digital microscope electronic eyepiece to get obtain fine image. The color image pipeline for digital microscope, including the procedures that convert the RAW image data captured by sensor into real color image, is of great concern to the quality of microscopic image. The color pipeline for digital microscope is different from digital still cameras and video cameras because of the specific requirements of microscopic image, which should have the characters of high dynamic range, keeping the same color with the objects observed and a variety of image post-processing. In this paper, a new color image processing pipeline is proposed to satisfy the requirements of digital microscope image. The algorithm of each step in the color image processing pipeline is designed and optimized with the purpose of getting high quality image and accommodating diverse user preferences. With the proposed pipeline implemented on the digital microscope platform, the output color images meet the various analysis requirements of images in the medicine and biology fields very well. The major steps of color imaging pipeline proposed include: black level adjustment, defect pixels removing, noise reduction, linearization, white balance, RGB color correction, tone scale correction and gamma correction.
机译:数字显微镜在生物学领域中发现了广泛的应用,Medicine等人。数字显微镜与传统光学显微镜的不同之处在于,不需要直接观察样品,因为光学图像直接投影在CCD / CMOS相机上。然而,由于人眼和传感器之间的成像差异,数字显微镜电子目镜需要彩色图像处理管道以获得细图像。数字显微镜的彩色图像管道,包括将传感器捕获的原始图像数据转换为真实彩色图像的程序,对微观图像的质量非常关注。数字显微镜的颜色管道与数字静态摄像头和摄像机不同,因为微观图像的具体要求,这应该具有高动态范围的特征,保持与观察到的物体以及各种图像后处理的颜色。本文提出了一种新的彩色图像处理管道来满足数字显微镜图像的要求。彩色图像处理管道中的每个步骤的算法设计和优化,目的是获得高质量图像并容纳不同的用户偏好。通过在数字显微镜平台上实现的提出的管道,输出彩色图像非常良好地满足药物和生物领域中图像的各种分析要求。提出的彩色成像管道的主要步骤包括:黑色级调整,缺陷像素去除,降噪,线性化,白平衡,RGB颜色校正,音调校正和伽玛校正。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号