Lightness modification method considering chromaticity loss for dichromats

Sharpe L.T., Stockman, A., Jagle, H., Nathans, J.: Opsin genes, cone photopigments, color vision, and color blindness. Color vision: Fromgenes to perception, 3 (1999)

Deeb, S.S.: The molecular basis of variation in human color vision. Clin. Genet. 67, 369–377 (2005)

Article  CAS  PubMed  Google Scholar 

Neitz, J., Neitz, M.: The genetics of normal and defective color vision. Vision. Res. 51, 633–651 (2011)

Article  CAS  PubMed  Google Scholar 

Brettel, H., Viénot, F., Mollon, J.D.: Computerized simulation of color appearance for dichromats. JOSA A. 14(10), 2647–2655 (1997)

Article  ADS  CAS  PubMed  Google Scholar 

Judd, D.B.: Color perceptions of deuteranopic and protanopic observers. J. Res. Natl. Bur. Stand. 41, 247–271 (1948)

Article  CAS  Google Scholar 

Alpern, M., Kitahara, K., Krantz, D.H.: Perception of colour in unilateral tritanopia. J. Physiol. 335, 683–697 (1983)

Article  CAS  PubMed  PubMed Central  Google Scholar 

Viénot, F., Brettel, H., Mollon, J.D.: Digital video colourmaps for checking the legibility of displays by dichromats. Color. Res. Appl. 24(4), 243–252 (1999)

Article  Google Scholar 

Machado, G.M., Oliveira, M.M., Fernandes, L.A.: A physiologically-based model for simulation of color vision deficiency. IEEE Trans. Vis. Comput. Graph. 15(6), 1291–1298 (2009)

Article  PubMed  Google Scholar 

Yaguchi, H., Luo, J., Kato, M., Mizokami, Y.: Computerized simulation of color appearance for anomalous trichromats using the multispectral image. JOSA A. 35(4), 278–286 (2018)

Article  Google Scholar 

Nagai, T., Shinoda, H., Yamaguchi, H., Rattanakasamsuk, K.: Estimation and verification of the optimum spectrum for color-barrier-free illumination. Nihon Shikisai Gakkaishi. 33, 76–77 (2009). (in Japanese)

Google Scholar 

Tamura, S., Hiraga, T.: Primary experiment of color-barrier-free illumination. Nihon Shikisai Gakkaishi. 35, 106–107 (2011) (in Japanese)

Tamura, S.: Practical color-barrier-free illumination. Nihon Shikisai Gakkaishi. 36, 124 (2012). (in Japanese)

Google Scholar 

Bao, S., Tanaka, G., Tajima, J.: Fundamental study of illumination transformation for color vision deficiencies. Opt. Rev. 22(1), 79–92 (2015)

Article  Google Scholar 

Ichikawa, M., Tanaka, K., Kondo, S., Hiroshima, K., Ichikawa, K., Tanabe, S., Fukami, K.: Web-page color modification for barrier-free color vision with genetic algorithm. Lect. Notes Comput. Sci. 2724, 2134–2146 (2003)

Article  Google Scholar 

Rasche, K., Geist, R., Westall, J.: Detail preserving reproduction of color images for monochromats and dichromats. IEEE Comput. Graph. Appl. 25(3), 22–30 (2005)

Article  PubMed  Google Scholar 

Rasche, K., Geist, R., Westall, J.: Re-coloring image for gamuts of lower dimension. Comput. Graph. Forum. 24(3), 423–432 (2005)

Article  Google Scholar 

Wakita, K., Shimamura, K.: SmartColor: disambiguation framework for the colorblind. In: Proc. 7th Int. ACM SIGACCESS Conf. Computers and Accessibility, pp. 158–165 (2005)

Iaccarino, G., Malandrino, D., Percio, M.D., Scarano, V.: Efficient edge-services for colorblind users. In: Proc. ACM Press. 15th International Conference on World Wide Web, pp. 919–920 (2006)

Huang, J.B., Tseng, Y.C., Wu, S.I., Wang, S.J.: Information preserving color transformation for protanopia and deuteranopia. IEEE Signal Process. Lett. 14(10), 711–714 (2007)

Article  ADS  Google Scholar 

Anagnostopoulos, C.-N., Tsekouras, G., Anagnostopoulos, I., Kalloniatis, C.: Intelligent modification for the daltonization process of digitized paintings. In: Proc. 5th International Conference on Computer Vision Systems, pp. 1–10 (2007)

Jefferson, L. Harvey, R.: An interface to support color blind computer users. In: Proc. ACM SIGCHI, pp. 1535–1538 (2007)

Nakauchi, S., Onouchi, T.: Detection and modification of confusing color combinations for red-green dichromats to achieve a color universal design. Color Res. Appl. 33(3), 203–211 (2008)

Article  Google Scholar 

Huang, J. B., Wu, S. Y., Chen, C. S.: Enhancing color representation for the color vision impaired. In: Proc. Workshop Computer Vision Applications for the Visually Impaired, pp. 1–12 (2008)

Kuhn, G.R., Oliveira, M.M., Fernandes, L.A.F.: An efficient naturalness-preserving image-recoloring method for dichromats. IEEE Trans. Vis. Comput. Graphics. 14(6), 1747–1754 (2008)

Article  Google Scholar 

Huang, J.B., Chen, C.S., Jen, T.C., Wang, S.J.: Image recolorization for the colorblind. In: Proc. IEEE Int. Conf. Acoustics, Speech and Signal Processing, pp. 1161–1164 (2009)

Tanaka, G., Suetake, N., Uchino, E.: Lightness modification of color image for protanopia and deuteranopia. Opt. Rev. 17(1), 14–23 (2010)

Article  Google Scholar 

Huang, C.R., Chiu, K.C., Chen, C.S.: Key color priority based image recoloring for dichromats. Proc. Adv. Multimed. Inf. Process. PCM 2010, 637–647 (2011)

Google Scholar 

Tanaka, G., Suetake, N., Uchino, E.: Yellow-blue component modification of color image for protanopia or deuteranopia. IEICE Trans. Fundamentals of Electronics, Communications and Computer Sciences, E94-A(2), pp.884–888 (2011)

Jeong, J.Y., Kim, H.J., Kim, Y.H., Wang, T.S., Ko, S.J.: Enhanced re-coloring method with an information preserving property for color-blind person. In: Proc. IEEE Int. Conf. Consumer Electronics, pp. 600–601 (2012)

Flatla, D. R., Gutwin, C.: “So that?s what you see!”: building understanding with personalized simulations of colour vision deficiency. In: Proc. ACM SIGACCESS Conference on Computers and Accessibility, pp. 167–174 (2012)

Takimoto, H., Yamauchi, H., Jindai, M., Kanagawa, A.: Modification of indistinguishable colors for people with color vision deficiency. J. Signal Process. 16(6), 587–592 (2012)

Article  Google Scholar 

Flatla, D. R., Reinecke, K., Gutwin, C., Gajos, K. Z.: SPRWeb: Preserving subjective responses to website colour schemes through automatic recolouring. In: Proc. ACM SIGCHI Conference on Human Factors in Computing Systems, pp. 2069–2078 (2013)

Milic, N., Hoffmann, M., Tomacs, T., Novakovic, D., Milosavljevic, B.: A content-depenent naturalness-preserving daltonization method for dichromatic and anomalous trichromatic color vision deficiencies. J. Imaging Sci. Technol. 59(1), 105041–1050410 (2015)

Article  Google Scholar 

Tennenholtz, G., Zachevsky, I.: Natural contrast enhancement for dichromats using similarity maps. In: Proc. 2016 IEEE International Conference on the Science of Electrical Engineering (ICSEE), pp 1-5 (2016)

Hassan, M.F., Paramesran, R.: Signal Processing. Image Commun. 57, 126–133 (2017)

Google Scholar 

Lin, H.Y., Chen, L.Q., Wang, M.L.: Improving discrimination in color vision deficiency by image re-coloring. Sensors. 19(10), 2250–2268 (2019)

Article  ADS  PubMed  PubMed Central  Google Scholar 

Hassan, M.F.: Flexible color contrast enhancement method for red-green deficiency. Multidimension. Syst. Signal Process. 30(4), 1975–1989 (2019)

Article  Google Scholar 

Zhu, Z., Toyoura, M., Go, K., Fujishiro, I., Kashiwagi, K., Mao, X.: Processing images for red-green dichromats compensation via naturalness and information-preservation considered recoloring. Vis. Comput. 5(6–8), 1053–1066 (2019)

Article  Google Scholar 

Zhu, Z., Toyoura, M., Go, K., Fujishiro, I., Kashiwagi, K., Mao, X.: Naturalness-and information-preserving image recoloring for red-greendichromats. Signal Process. Image Commun. 76, 68–80 (2019)

Article  Google Scholar 

Meng, M., Tanaka, G.: Lightness modification method considering visual characteristics of protanopia and deuteranopia. Opt. Rev. 27(6), 548–560 (2020)

Article  Google Scholar 

Wyszecki, G., Stiles, W.S.: Color Science: Concepts and Methods. Quantitative Data and Formulae. Wiley, New York (2000)

Google Scholar 

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