[1] Y. Fang, K. Ma, Z. Wang and W. Lin, "No-Reference Quality Assessment of Contrast-Distorted Images Based on Natural Scene Statistics," IEEE Signal Processing Letters, vol. 22, no. 7, pp. 838-842, 2015.
[2] W. Lin and C. -C. J. Kuo, "Perceptual Visual Quality Metrics: A survey," Visual Communication and Image Representation, vol. 22, no. 4, pp. 297-312, 2011.
[3] A. C. B. Zhou Wang, Modern Image Quality Assessment (Synthesis Lectures on Image, Video, & Multimedia Processing), San Mateo, CA, USA: Morgan & Claypool Publishers, 2006.
[4] Z. Wang, A. Bovik, H. Sheikh and E. Simoncelli, "Image Quality Assessment: From Error Visibility to Structural Similarity," IEEE Trans. Image Processing, CA, 2004.
[5] H. R. Sheikh and A. C. Bovik, "Image Information and Visual Quality," Transactions on Image Processing, Montreal, Que., Canada, 2006.
[6] R. Hassen, Z. Wang and M. Salama, "No-Reference Image Sharpness Assessment Based on Local Phase Coherence Measurement," The IEEE International Conference on Acoustics, Speech and Signal Processing, Dallas, TX, USA, 2010.
[7] L. Li, W. Lin, X. Wang, G. Yang, K. Bahrami and A. C. Kot, "No-Reference Image Blur Assessment Based on Discrete Orthogonal Moments," in IEEE Transactions on Cybernetics, Cybern, 2016.
[8] D. L. Ruderman and W. Bialek, "Statistics of Natural Images: Scaling in the Woods," Physical Review Letters, vol. 73, no. 6, pp. 551-558, 1995.
[9] K. Gu, G. Zhai, W. Lin, X. Yang and W. Zhang, "No-Reference Image Sharpness Assessment in Autoregressive Parameter Space," Shanghai Municipal Commission of Economy and Informatization, China, Shanghai, 2015.
[10] J. Shen, Q. Li and G. Erlebacher, "Curvelet-Based No-Reference Objective Image Quality Assessment," Proceedings of the 27th Picture Coding Symposium (PCS'09), NJ, USA, 2009.
[11] W. Lua, K. Zing, D. Tao, Y. Yuan and X. Gao, "No-Reference Image QualityAassessment in Contourlet Domain," Neurocomputing, vol. 73, no. 4-6, pp. 784-794, January 2010.
[12] C. Li, A. C. Bovik and X. Wu, "Blind Image Quality Assessment Using a General Regression Neural Network," IEEE Transactions on Neural Networks, 2011.
[13] A. K. Moorthy and Alan Conrad Bovik, "Blind Image Quality Assessment: From Natural Scene Statistics to Perceptual Quality," IEEE Transactions on Image Processing, 2011.
[14] A. K. Tripathi, S. Mukhopadhyay and A. K. Dhara, "Performance Metrics for Image Contrast," International Conference on Image Information Processing (ICIIP), Shimla, India, Nov. 2011.
[15] A. Mittal, A. K. Moorthy and A. C. Bovik, "No-Reference Image Quality Assessment in the Spatial Domain," IEEE Transactions on Image Processing, August, 2012.
[16] A. Mittal, R. Soundarajan and A. C. Bovik, "Making a “Completely Blind” Image Quality Analyzer," IEEE Signal Processing Letters, pp. 209-212, 2013.
[17] K. Gu, G. Zhai, X. Yang, W. Zhang and M. Liu, "Subjective and Objective Quality Assessment for Images with Contrast Change," Image Processing (ICIP), Melbourne, VIC, Australia, Sept. 2013.
[18] W. Xue, X. Mou, L. Zhang, A. C. Bovik and X. Feng, "Blind Image Quality Assessment Using Joint Statistics of Gradient Magnitude and Laplacian Features," IEEE Transactions on Image Processing, 2014.
[19] B. Liu, L.-X. Liu, H.-P. Dong and Y.-G. Lin, "Blind Image Quality Assessment Based on Mutual Information," Electronics, Communications and Networks, vol. 382, pp. 127-136, 29 June 2016.
[20] H. Sheikh, Z. Wang, L. Cormack and A. Bovik, "LIVE Image Quality Assessment Database Release 2,"[Online]. Available: http://live.ece.utexas.edu/research/quality.[Accessed 2014].
[21] K. Gu, G. Zhai, W. Lin and M. Liu, "The Analysis of Image Contrast: From Quality Assessment to Automatic Enhancement," Transactions on Cybernetics (T-)CYP, vol. 46, no. 1, pp. 284 - 297, Jan 2016.
[22] J. Wu, Z. Xia, Y. Ren and H. Li, "No-Reference Quality Assessment for Contrast-Distorted Image," International Conference on Image Processing Theory Tools and Applications (IPTA), Oulu, Finland, Dec. 2016.
[23] K. Gu, W. Lin, G. Zhai, X. Yang, W. Zhang and C. W. Chen, "No-Reference Quality Metric of Contrast-Distorted Images Based on Information Maximization," IEEE Transactions on CYBERNETICS, 2016.
[24] A. Shokrollahi, A. Mahmoudi-Aznaveh and B. M.-N. Maybodi, "Image Quality Assessment for Contrast Enhancement Evaluation," International Journal of Electronics and Communications (AEÜ), pp. 61-66, 2017.
[25] K. Gu, J. Zhou, J.-F. Qiao, G. Zhai, W. Lin and A. C. Bovik, "No-Reference Quality Assessment of Screen Content Pictures," IEEE Transactions on Image Processing, China, Singapore, 2017.
[26] K. Gu, D. Tao, J.-F. Qiao and W. Lin, "Learning a No-Reference Quality Assessment Model of Enhanced Images with Big Data," IEEE Transactions on Neural Networks and Learning Systems, Singapore, 2017.
[27] T. Virtanen, M. Nuutinen, M. Vaahteranoksa, P. Oittinen and J. Häkkinen, "CID2013: A Database for Evaluating No-Reference Image Quality Assessment Algorithms," IEEE Transactions on Image Processing, vol. 24, no. 1, pp. 390-402, 2015.
[28] N. Ponomarenko, O. Ieremeiev, V. Lukin, K. Egiazarian, L. Jin, J. Astola and B. Vozel, "Color Image Database TID2013: Perculiarities and Preliminary Results," The 4th European Workshop on Visual Information, 2013.
[29] E. C. Larson and D. M. Chandler, "Categorical Image Quality (CSIQ) Database," 2010.[Online], Available: http://vision.okstate.edu/csiq.
[30] M. Faichild, Color Appearance Models, John Wiley & Sons, p. 87, 2013.
[31] I. R. Assembly, "Methodology for the Subjective Assessment of the Quality of Television Pictures ITU - Radiocom Sector," International Telecommunication Union, 2013.