• Opto-Electronic Engineering
  • Vol. 47, Issue 1, 190268 (2020)
Wang Qiang*, Tao Pei, Yuan Bo, and Wang Liqiang
Author Affiliations
  • [in Chinese]
  • show less
    DOI: 10.12086/oee.2020.190268 Cite this Article
    Wang Qiang, Tao Pei, Yuan Bo, Wang Liqiang. Vessel enhancement of endoscopic image based on multi-color space[J]. Opto-Electronic Engineering, 2020, 47(1): 190268 Copy Citation Text show less
    References

    [1] Fraz M M, Remagnino P, Hoppe A, et al. Blood vessel segmen-tation methodologies in retinal images–a survey[J]. Computer Methods and Programs in Biomedicine, 2012, 108(1): 407–433.

    [2] Yang S F, Cheng C H. Fast computation of Hessian-based enhancement filters for medical images[J]. Computer Methods

         and Programs in Biomedicine, 2014, 116(3): 215–225.

    [3] Oh J, Hwang H. Feature enhancement of medical images using morphology-based homomorphic filter and differential evolution algorithm[J]. International Journal of Control, Automation and Systems, 2010, 8(4): 857–861.

    [4] Yin X X, Ng B WH, He J, et al. Accurate image analysis of the retina using Hessian matrix and binarisation of thresholded en-tropy with application of texture mapping[J]. PLoS One, 2014, 9(4): e95943.

    [5] Ajam A, Aziz A A, Asirvadam V S, et al. Cerebral vessel en-hancement using bilateral and Hessian-based fil-ter[C]//Proceedings of 2016 6th International Conference on In-telligent and Advanced Systems (ICIAS), 2016.

    [6] Kakushima N, Yoshida M, Yamaguchi Y, et al. Magnified en-doscopy with narrow-band imaging for the differential diagnosis of superficial non-ampullary duodenal epithelial tumors[J]. Scandinavian Journal of Gastroenterology, 2019, 54(1): 128–134.

    [7] Osawa H, Yamamoto H. Present and future status of flexible spectral imaging color enhancement and blue laser imaging technology[J]. Digestive Endoscopy, 2014, 26(S1): 105–115.

    [8] Kodashima S, Fujishiro M. Novel image-enhanced endoscopy with i-scan technology[J]. World Journal of Gastroenterology, 2010, 16(9): 1043–1049.

    [10] Hebden J C, Varela M, Magazov S, et al. Diffuse optical imaging of the newborn infant brain[C]//Proceedings of 2012 9th IEEE International Symposium on Biomedical Imaging, 2012: 503–505.

    [11] Preece S J, Claridge E. Monte Carlo modelling of the spectral reflectance of the human eye[J]. Physics in Medicine & Biology, 2002, 47(16): 2863–2877.

    [12] Robles F E, Chowdhury S, Wax A. Assessing hemoglobin con-centration using spectroscopic optical coherence tomography for feasibility of tissue diagnostics[J]. Biomedical Optics Express, 2010, 1(1): 310–317.

    [14] Coriat R, Chryssostalis A, Zeitoun J D, et al. Computed virtual chromoendoscopy system (FICE): a new tool for upper endos-copy?[J]. Gastroentérologie Clinique et Biologique, 2008, 32(4): 363–369.

    [15] Kamphuis G M, de Bruin D M, Fallert J, et al. Storz professional image enhancement system: a new technique to improve en-doscopic bladder imaging[J]. Journal of Cancer Science & Therapy, 2016, 8(3): 71–77.

    [16] Xu Z Y, Liu X M, Ji N. Fog removal from color images using contrast limited adaptive histogram equalization[C]//Proceedings of 2009 2nd International Congress on Image and Signal Processing, 2009.

    Wang Qiang, Tao Pei, Yuan Bo, Wang Liqiang. Vessel enhancement of endoscopic image based on multi-color space[J]. Opto-Electronic Engineering, 2020, 47(1): 190268
    Download Citation