ISSN 1004-4140
CN 11-3017/P
CAO Yan, CHEN Wei. Application of Image Enhancement in X-ray Medical Image[J]. CT Theory and Applications, 2015, 24(4): 545-551. DOI: 10.15953/j.1004-4140.2015.24.04.08
Citation: CAO Yan, CHEN Wei. Application of Image Enhancement in X-ray Medical Image[J]. CT Theory and Applications, 2015, 24(4): 545-551. DOI: 10.15953/j.1004-4140.2015.24.04.08

Application of Image Enhancement in X-ray Medical Image

More Information
  • Received Date: March 16, 2015
  • Available Online: December 08, 2022
  • Objective: To Enhance the X-ray image. Method: Apply multiple complementary method on image enhancement. First of all, using the Laplacian method to highlight image details, and then using the gradient method projecting edge. Then using the smoothed gradient image masks Laplacian image, through the high increase filter obtains sharpen image. And then, the dynamic gray level range of the image sharpening is increased by the gray level transformation. Finally, comparing the results of traditional algorithm with the algorithm proposed in this paper. The algorithm proposed in this paper enhanced the X-ray medical image significantly, has the great advantage compared to the traditional algorithm. The detail of the enhanced image is clearer, the implementation effect is better than any kind traditional algorithm. Conclusion: The algorithm proposed in this paper has certain theoretical and practical applied value on X-ray medical image.
  • Related Articles

    [1]WANG Ce, ZHOU Fengyun, XUAN Yanjiao, WANG Wenhai, YAO Lin, SHI Zheng, MA Yongzhong, CHENG Xiaoguang. Measurement and Analysis of Gonadal Irradiation Dose During Singe-shot X-ray Exposure of Both Lower Limbs[J]. CT Theory and Applications, 2024, 33(5): 627-632. DOI: 10.15953/j.ctta.2023.171
    [2]CHEN Zhong, LIANG Jia-hui, ZHANG Xian-min. Method and Experiments on Slice Reconstruction of Plate-like Component Based on X-ray Laminography[J]. CT Theory and Applications, 2014, 23(4): 579-589.
    [3]ZHANG Yu-long, CHEN Huai-bi, ZHA Hao. Energy Shaping Theory and Simulation for Electron Linac X-ray Source[J]. CT Theory and Applications, 2014, 23(1): 1-8.
    [4]ZHENG Jia, ZHANG Ding-hua, HUANG Kui-dong, LI Xiang-xin. An Adaptive Enhance Method Based on Unsharp Masking for Cone Beam CT Images[J]. CT Theory and Applications, 2013, 22(2): 291-296.
    [5]YANG Xiao-gang, YANG Li-rui. A Method on X-ray Security Image Enhancement[J]. CT Theory and Applications, 2012, 21(4): 705-712.
    [6]ZHANG Jun-sheng, WANG Ming-quan, GUO Yong-liang, CHEN Zhi-qiang. Analysis of X-ray Digital Imaging System Resolution[J]. CT Theory and Applications, 2011, 20(2): 227-234.
    [7]SUN Yi, ZHU Pei-ping, LIU Ming-he, YU Jian. A Calibration Method for the Misaligned Geometry of Hard X-ray Diffraction Enhanced Top Position Imaging CT[J]. CT Theory and Applications, 2006, 15(2): 13-21.
    [8]SUN Li-na, YUAN Pei-xin. Study On Object Classification Base On Dual-Energy X-ray Transmission Technology[J]. CT Theory and Applications, 2005, 14(2): 22-27.
    [9]ZENG Xiang-zhao. A Summary of Identify the X-ray Test Image[J]. CT Theory and Applications, 2004, 13(1): 29-31.
    [10]WANG Xue-li. Spatial Resolution and Fourier Analysis for X-ray Medical Device[J]. CT Theory and Applications, 2003, 12(4): 36-41.
  • Cited by

    Periodical cited type(0)

    Other cited types(1)

Catalog

    Article views (922) PDF downloads (16) Cited by(1)
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return