Methods for reducing visual discomfort in stereoscopic 3D: A review
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[1] Alexandre Pereda-Baños,et al. Exploring the effects of 3D visual discomfort on viewers' emotions , 2014, 2014 IEEE International Conference on Image Processing (ICIP).
[2] Yi-Pai Huang,et al. Multi-Zone Digital Crosstalk Reduction by Image Processing in 3D Display , 2014, Journal of Display Technology.
[3] Yong Man Ro,et al. Visual comfort improvement in stereoscopic 3D displays using perceptually plausible assessment metric of visual comfort , 2014, IEEE Transactions on Consumer Electronics.
[4] Jianbing Shen,et al. Stereoscopic 3D crosstalk prediction , 2014, 2014 7th International Congress on Image and Signal Processing.
[5] Wijnand A. IJsselsteijn,et al. Perceptual attributes of crosstalk in 3D images , 2005, Displays.
[6] Joydeep Ghosh,et al. Algorithmic assessment of 3D quality of experience for images and videos , 2011, 2011 Digital Signal Processing and Signal Processing Education Meeting (DSP/SPE).
[7] Truong Q. Nguyen,et al. Crosstalk modeling in circularly polarized stereoscopic LCDS , 2014, 2014 IEEE International Conference on Image Processing (ICIP).
[8] Sumio Yano,et al. A study of visual fatigue and visual comfort for 3D HDTV/HDTV images , 2002 .
[9] S. Pastoor,et al. Stereoscopic image representation with synthetic depth of field , 1997 .
[10] Dae-Sik Kim,et al. How much crosstalk can be allowed in a stereoscopic system at various grey levels? , 2012, Electronic Imaging.
[11] Yong Man Ro,et al. Local disparity remapping to enhance depth quality of stereoscopic 3D images using stereoacuity function , 2014, Electronic Imaging.
[13] Dong-Hoon Kang,et al. Perceptual Strength of 3-D Crosstalk in Both Achromatic and Color Images in Stereoscopic 3-D Displays , 2012, IEEE Transactions on Image Processing.
[14] Yong Man Ro,et al. Experimental investigation of discomfort combination: toward visual discomfort prediction for stereoscopic videos , 2014, J. Electronic Imaging.
[15] Colin Ware,et al. Dynamic adjustment of stereo display parameters , 1998, IEEE Trans. Syst. Man Cybern. Part A.
[16] Yong Man Ro,et al. Visual Comfort Amelioration Technique for Stereoscopic Images: Disparity Remapping to Mitigate Global and Local Discomfort Causes , 2014, IEEE Transactions on Circuits and Systems for Video Technology.
[17] Ioannis Pitas,et al. Automatic detection of depth jump cuts and bent window effects in stereoscopic videos , 2013, IVMSP 2013.
[18] M. Ben-Ezra,et al. Automatic disparity control in stereo panoramas (OmniStereo) , 2000, Proceedings IEEE Workshop on Omnidirectional Vision (Cat. No.PR00704).
[19] Tao Zhang,et al. Visual discomfort prediction for stereo contents , 2011, Electronic Imaging.
[20] Anatole Lécuyer,et al. Using an Eye-Tracking System to Improve Camera Motions and Depth-of-Field Blur Effects in Virtual Environments , 2008, 2008 IEEE Virtual Reality Conference.
[21] Bernd Fröhlich,et al. Non-Uniform Crosstalk Reduction for Dynamic Scenes , 2007, 2007 IEEE Virtual Reality Conference.
[22] Марк Томас Джонсон,et al. Autostereoscopic display apparatus , 2013 .
[23] Michael F. Cohen,et al. A Viewer-Centric Editor for 3D Movies , 2011, IEEE Computer Graphics and Applications.
[24] Aljoscha Smolic,et al. Computational stereo camera system with programmable control loop , 2011, ACM Trans. Graph..
[25] Xiaoyan Wang,et al. Improved Crosstalk Reduction on Multiview 3D Display by Using BILS Algorithm , 2014, J. Appl. Math..
[26] R. Raskar,et al. Display Adaptive 3 D Content Remapping , 2013 .
[27] Alan C. Bovik,et al. Saliency Prediction on Stereoscopic Videos , 2014, IEEE Transactions on Image Processing.
[28] Kwanghoon Sohn,et al. Visual Fatigue Relaxation for Stereoscopic Video via Nonlinear Disparity Remapping , 2015, IEEE Transactions on Broadcasting.
[29] Colin Doutre,et al. Crosstalk cancellation in 3D video with local contrast reduction , 2011, 2011 19th European Signal Processing Conference.
[30] Jing Liu,et al. 3D+2DTV: 3D displays with no ghosting for viewers without glasses , 2013, TOGS.
[31] Xiaoqiao Huang,et al. Visual Comfort Modeling for Disparity in 3D Contents Based on Weber–Fechner's Law , 2014, Journal of Display Technology.
[32] Yung-Yu Chuang,et al. 3D cinematography principles and their applications to stereoscopic media processing , 2011, ACM Multimedia.
[33] Gordon Wetzstein,et al. Tensor displays , 2012, SIGGRAPH '12.
[34] Wijnand A. IJsselsteijn,et al. A survey of perceptual evaluations and requirements of three-dimensional TV , 2004, IEEE Transactions on Circuits and Systems for Video Technology.
[35] Anil C. Kokaram,et al. A Video Database for the Development of Stereo-3D Post-Production Algorithms , 2010, 2010 Conference on Visual Media Production.
[36] Mei Yu,et al. Visual discomfort relaxation for stereoscopic 3D images by adjusting zero-disparity plane for projection , 2015, Displays.
[37] Kwang-Hoon Lee,et al. Crosstalk reduction in auto-stereoscopic projection 3D display system. , 2012, Optics express.
[38] Eric Dubois,et al. Cancellation of image crosstalk in time-sequential displays of stereoscopic video , 2000, IEEE Trans. Image Process..
[39] J. C. Kotulak,et al. Dynamic interactions between accommodation and convergence are velocity sensitive , 1986, Vision Research.
[40] Yong Man Ro,et al. Disparity remapping to ameliorate visual comfort of stereoscopic video , 2013, Electronic Imaging.
[41] Alan C. Bovik,et al. 3D Visual Discomfort Predictor: Analysis of Disparity and Neural Activity Statistics , 2015, IEEE Transactions on Image Processing.
[42] Ke-Ying Liao,et al. Comfortable Disparity Modification for Existing DIBR Systems , 2015, J. Inf. Sci. Eng..
[43] Nobuyuki Miyake,et al. Stereoscopic 3‐D display with optical correction for the reduction of the discrepancy between accommodation and convergence , 2005 .
[44] Graham R Jones,et al. Controlling perceived depth in stereoscopic images , 2001, IS&T/SPIE Electronic Imaging.
[45] Alan C. Bovik,et al. A survey on 3D quality of experience and 3D quality assessment , 2013, Electronic Imaging.
[46] Mei Yu,et al. Three-dimensional visual comfort assessment via preference learning , 2015, J. Electronic Imaging.
[47] Truong Q. Nguyen,et al. Crosstalk modeling, analysis, simulation and cancellation in passive-type stereoscopic LCD displays , 2013, 2013 IEEE International Conference on Acoustics, Speech and Signal Processing.
[48] José Manuel Menéndez,et al. Stereoscopic 3D video quality assessment based on depth maps and video motion , 2013, EURASIP J. Image Video Process..
[49] Stefano Livi,et al. Visual discomfort while watching stereoscopic three‐dimensional movies at the cinema , 2015, Ophthalmic & physiological optics : the journal of the British College of Ophthalmic Opticians.
[50] Neil A. Dodgson,et al. Predicting stereoscopic viewing comfort using a coherence-based computational model , 2011, CAe '11.
[51] Philippe Fuchs,et al. Visual Fatigue Reduction for Immersive Stereoscopic Displays by Disparity, Content, and Focus-Point Adapted Blur , 2012, IEEE Transactions on Industrial Electronics.
[52] Taehyun Rhee,et al. Reducing Visual Discomfort with HMDs Using Dynamic Depth of Field , 2015, IEEE Computer Graphics and Applications.
[53] C. Schor,et al. A dynamic model of cross-coupling between accommodation and convergence: simulations of step and frequency responses. , 1992, Optometry and vision science : official publication of the American Academy of Optometry.
[54] Charles Sheard,et al. The Prescription Of Prisms: As Determined by Analyses of Data on Relative Amplitudes of Convergence and Accommodation , 1934 .
[55] Kwanghoon Sohn,et al. Stereoscopic image quality metric based on binocular perception model , 2012, 2012 19th IEEE International Conference on Image Processing.
[56] Kjell Brunnström,et al. Towards standardized 3DTV QoE assessment: cross-lab study on display technology and viewing environment parameters , 2013, Electronic Imaging.
[57] Touradj Ebrahimi,et al. Multimodal Dataset for Assessment of Quality of Experience in Immersive Multimedia , 2015, ACM Multimedia.
[58] Dongxiao Li,et al. On adjustment of stereo parameters in multiview synthesis for planar 3D displays , 2015 .
[59] Glenn A. Fry,et al. FURTHER EXPERIMENTS ON THE ACCOMMODATION CONVERGENCE RELATIONSHIP , 1939 .
[60] Patrick Le Callet,et al. New stereoscopic video shooting rule based on stereoscopic distortion parameters and comfortable viewing zone , 2011, Electronic Imaging.
[61] Aljoscha Smolic,et al. Intermediate view interpolation based on multiview video plus depth for advanced 3D video systems , 2008, 2008 15th IEEE International Conference on Image Processing.
[62] Do-Kyoung Kwon,et al. Optimizing 3D image display using the stereoacuity function , 2012, 2012 19th IEEE International Conference on Image Processing.
[63] Gangyi Jiang,et al. A depth perception and visual comfort guided computational model for stereoscopic 3D visual saliency , 2015, Signal Process. Image Commun..
[64] Meng Wang,et al. Image retargeting with a 3D saliency model , 2015, Signal Process..
[65] Geng Sun,et al. Evaluating methods for controlling depth perception in stereoscopic cinematography , 2009, Electronic Imaging.
[66] Yong Man Ro,et al. Investigation of object thickness for visual discomfort prediction in stereoscopic images , 2012, Electronic Imaging.
[67] Carsten Rother,et al. A stereo approach that handles the matting problem via image warping , 2009, 2009 IEEE Conference on Computer Vision and Pattern Recognition.
[68] Lin Qi,et al. An Autostereoscopic 3D Projection Display Based on a Lenticular Sheet and a Parallax Barrier , 2012, Journal of Display Technology.
[69] H. Seidel,et al. Pattern-aware Deformation Using Sliding Dockers , 2011, SIGGRAPH 2011.
[70] Feng Shao,et al. 3D Visual Comfort Assessment via Sparse Coding , 2015, ICIG.
[71] Ja-Ling Wu,et al. Seam Carving for Color-Plus-Depth 3D Image , 2014, 2014 IEEE International Symposium on Multimedia.
[72] Do-Kyoung Kwon,et al. Full-reference quality assessment of stereopairs accounting for rivalry , 2013, Signal Process. Image Commun..
[73] K. Fujii,et al. Visualization for the analysis of fluid motion , 2005, J. Vis..
[74] Rynson W. H. Lau,et al. Depth Mapping for Stereoscopic Videos , 2013, International Journal of Computer Vision.
[75] Hang-Bong Kang,et al. Prediction of visual discomfort in watching 3D video using multiple features , 2014, 2014 Southwest Symposium on Image Analysis and Interpretation.
[76] Filippo Speranza,et al. Visual comfort: stereoscopic objects moving in the horizontal and mid-sagittal planes , 2012, Electronic Imaging.
[77] Alan C. Bovik,et al. 3D Visual Discomfort Prediction: Vergence, Foveation, and the Physiological Optics of Accommodation , 2014, IEEE Journal of Selected Topics in Signal Processing.
[78] Robert S Allison,et al. Stereoscopy and the Human Visual System. , 2011, SMPTE motion imaging journal.
[79] Andrew J. Woods,et al. A simple method for measuring crosstalk in stereoscopic displays , 2011, Electronic Imaging.
[80] Minggao Li,et al. The Backlight Control System Aimed at Reducing Crosstalk in Autostereoscopic Displays , 2014 .
[81] A. Aydin Alatan,et al. User assisted disparity remapping for stereo images , 2013, Signal Process. Image Commun..
[82] Touradj Ebrahimi,et al. A perceptual quality metric for stereoscopic crosstalk perception , 2010, 2010 IEEE International Conference on Image Processing.
[83] John P. McIntire,et al. Stereoscopic 3D displays and human performance: A comprehensive review , 2014, Displays.
[84] Neil A. Dodgson,et al. Three-Dimensional Displays: A Review and Applications Analysis , 2011, IEEE Transactions on Broadcasting.
[85] François Pitié,et al. A Video Database for the Development of Stereo-3D Post-Production Algorithms , 2010 .
[86] Kwanghoon Sohn,et al. Visual Fatigue Prediction for Stereoscopic Image , 2011, IEEE Transactions on Circuits and Systems for Video Technology.
[87] Jiebo Luo,et al. Toward Assessing and Improving the Quality of Stereo Images , 2012, IEEE Journal of Selected Topics in Signal Processing.
[88] Yong Man Ro,et al. Predicting Visual Discomfort of Stereoscopic Images Using Human Attention Model , 2013, IEEE Transactions on Circuits and Systems for Video Technology.
[89] Sumio Yano,et al. Visual fatigue caused by stereoscopic images and the search for the requirement to prevent them: A review , 2012, Displays.
[90] Stefan Winkler,et al. Stereo/multiview picture quality: Overview and recent advances , 2013, Signal Process. Image Commun..
[91] Dan Schonfeld,et al. General stereoscopic distortion rectification due to arbitrary viewer motion in binocular stereoscopic display , 2014, Electronic Imaging.
[92] Shai Avidan,et al. Stereo Seam Carving a Geometrically Consistent Approach , 2013, IEEE Transactions on Pattern Analysis and Machine Intelligence.
[93] Donald H. House,et al. Reducing visual discomfort of 3D stereoscopic displays with gaze-contingent depth-of-field , 2014, SAP.
[94] Yong Man Ro,et al. Crosstalk reduction in stereoscopic 3D displays: disparity adjustment using crosstalk visibility index for crosstalk cancellation. , 2014, Optics express.
[95] Daniel Weiskopf,et al. Anaglyph Stereo Without Ghosting , 2011, EGSR '11.
[96] Alexander A. Sawchuk,et al. Disparity manipulation for stereo images and video , 2008, Electronic Imaging.
[97] James J. Clark,et al. Detection of stereo window violation in 3D movies , 2014, SIGGRAPH '14.
[98] Julie M. Harris,et al. Speed discrimination of motion-in-depth using binocular cues , 1995, Vision Research.
[99] Peter Kauff,et al. Production Rules for Stereo Acquisition , 2011, Proceedings of the IEEE.
[100] Alexander Toet,et al. Visual comfort of binocular and 3D displays , 2004 .
[101] HyungKi Hong. Reduction of spatially non-uniform 3D crosstalk for stereoscopic display using shutter glasses , 2012, Displays.
[102] Sheng Liu,et al. An optical see-through head mounted display with addressable focal planes , 2008, 2008 7th IEEE/ACM International Symposium on Mixed and Augmented Reality.
[103] Weisi Lin,et al. Perceptual Full-Reference Quality Assessment of Stereoscopic Images by Considering Binocular Visual Characteristics , 2013, IEEE Transactions on Image Processing.
[104] Ramesh Raskar,et al. Automatic image retargeting , 2005, MUM '05.
[105] Touradj Ebrahimi,et al. A comprehensive database and subjective evaluation methodology for quality of experience in stereoscopic video , 2010, Electronic Imaging.
[106] Colin Doutre,et al. Optimized contrast reduction for crosstalk cancellation in 3D displays , 2011, 2011 3DTV Conference: The True Vision - Capture, Transmission and Display of 3D Video (3DTV-CON).
[107] Liang-Gee Chen,et al. Disparity Remapping by Nonlinear Perceptual Discrimination , 2010 .
[108] Ralph R. Martin,et al. A response time model for abrupt changes in binocular disparity , 2014, The Visual Computer.
[109] Patrick Le Callet,et al. Quality Assessment of Stereoscopic Images , 2008, EURASIP J. Image Video Process..
[110] Hans-Peter Seidel,et al. Optimizing Disparity for Motion in Depth , 2013, Comput. Graph. Forum.
[111] Byoungho Lee,et al. Crosstalk-Reduced Dual-Mode Mobile 3D Display , 2015, Journal of Display Technology.
[112] Masahito Torii,et al. Dynamic measurement of accommodative responses while viewing stereoscopic images , 2008 .
[113] Marcus Barkowsky,et al. How visual fatigue and discomfort impact 3D-TV quality of experience: a comprehensive review of technological, psychophysical, and psychological factors , 2013, annals of telecommunications - annales des télécommunications.
[114] Shai Avidan,et al. Geometrically consistent stereo seam carving , 2011, 2011 International Conference on Computer Vision.
[115] Alan C. Bovik,et al. Subjective evaluation of stereoscopic image quality , 2013, Signal Process. Image Commun..
[116] Christine Fernandez-Maloigne,et al. Investigation and modeling of visual fatigue caused by S3D content using eye-tracking , 2015, Displays.
[117] James Gao,et al. High-speed switchable lens enables the development of a volumetric stereoscopic display. , 2009, Optics express.
[118] Wen Gao,et al. Depth-Preserving Warping for Stereo Image Retargeting , 2015, IEEE Transactions on Image Processing.
[120] Clifton Schor,et al. The influence of interactions between accommodation and convergence on the lag of accommodation , 1999, Ophthalmic & physiological optics : the journal of the British College of Ophthalmic Opticians.
[121] David M. Hoffman,et al. The zone of comfort: Predicting visual discomfort with stereo displays. , 2011, Journal of vision.
[122] Fumio Okano,et al. Measurement of parallax distribution and its application to the analysis of visual comfort for stereoscopic HDTV , 2003, IS&T/SPIE Electronic Imaging.
[123] Hans-Peter Seidel,et al. Improving perception of binocular stereo motion on 3D display devices , 2014, Electronic Imaging.
[124] Martin S. Banks,et al. A stereo display prototype with multiple focal distances , 2004, ACM Trans. Graph..
[125] Takashi Sakamoto,et al. Design and evaluation of binocular stereoscopic system with variable vergence mechanism for near-field operation , 2014 .
[126] Jun Zhou,et al. A visual comfort metric for stereoscopic 3D video based on SMDE approach , 2012, 2012 IEEE International Conference on Signal Processing, Communication and Computing (ICSPCC 2012).
[127] Touradj Ebrahimi,et al. Impact of Acquisition Distortion on the Quality of Stereoscopic Images , 2010 .
[128] Richard Szeliski,et al. High-quality video view interpolation using a layered representation , 2004, SIGGRAPH 2004.
[129] Shuen-Huei Guan,et al. Stereoscopic 3D experience optimization using cropping and warping , 2011, SA '11.
[130] Sung-Jea Ko,et al. Depth Sensation Enhancement Using the Just Noticeable Depth Difference , 2012, IEEE Transactions on Image Processing.
[131] Wayne L. Wooten,et al. Reducing crosstalk between stereoscopic views , 1994, Electronic Imaging.
[132] Jianjun Lei,et al. The objective quality assessment of stereo image , 2013, Neurocomputing.
[133] Yong Man Ro,et al. Predicting Visual Discomfort Using Object Size and Disparity Information in Stereoscopic Images , 2013, IEEE Transactions on Broadcasting.
[134] Min-Chul Park,et al. Overview of Measurement Methods for Factors Affecting the Human Visual System in 3D Displays , 2015, Journal of Display Technology.
[135] Oliver Schreer,et al. NONLINEAR DEPTH SCALING FOR IMMERSIVE VIDEO APPLICATIONS , 2003 .
[136] Ming Zhang,et al. 3D Synthesis and Crosstalk Reduction for Lenticular Autostereoscopic Displays , 2015, Journal of Display Technology.
[137] The True Vision - Capture, Transmission and Display of 3D Video, 3DTV-Conference 2016, Hamburg, Germany, July 4-6, 2016 , 2016, 3DTV-Conference.
[138] Jenny C.A. Read,et al. User experience while viewing stereoscopic 3D television , 2014, Ergonomics.
[139] Kwanghoon Sohn,et al. Stereoscopic visual fatigue measurement based on fusional response curve and eye-blinks , 2011, 2011 17th International Conference on Digital Signal Processing (DSP).
[140] Marcus Barkowsky,et al. Visual Discomfort in 3DTV: Definitions, Causes, Measurement, and Modeling , 2015 .
[141] Mei Yu,et al. Subjective quality analyses of stereoscopic images in 3DTV system , 2011, 2011 Visual Communications and Image Processing (VCIP).
[142] Manbae Kim,et al. Depth Scaling of Multiview Images for Automultiscopic 3D Monitors , 2008, 2008 3DTV Conference: The True Vision - Capture, Transmission and Display of 3D Video.
[143] Munchurl Kim,et al. A perceptual quality assessment metric using temporal complexity and disparity information for stereoscopic video , 2011, 2011 18th IEEE International Conference on Image Processing.
[144] Clifton M. Schor,et al. The relationship between fusional vergence eye movements and fixation disparity , 1979, Vision Research.
[145] Wen Gao,et al. Region-based depth-preserving stereoscopic image retargeting , 2014, 2014 IEEE International Conference on Image Processing (ICIP).
[146] Alan C. Bovik,et al. 3D Visual Activity Assessment Based on Natural Scene Statistics , 2014, IEEE Transactions on Image Processing.
[147] Jerry D. Gibson,et al. Disparity remapping for handheld 3D video communications , 2012, 2012 IEEE International Conference on Emerging Signal Processing Applications.
[148] Alexei A. Goon,et al. Multifocal planes head-mounted displays. , 2000, Applied optics.
[149] Matthias Wöpking,et al. Viewing comfort with stereoscopic pictures : an experimental study on the subjective effects of disparity magnitude and depth of focus , 1995 .
[150] Kwanghyun Lee,et al. 3D Perception Based Quality Pooling: Stereopsis, Binocular Rivalry, and Binocular Suppression , 2015, IEEE Journal of Selected Topics in Signal Processing.
[151] Michael F. Cohen,et al. GradientShop: A gradient-domain optimization framework for image and video filtering , 2010, TOGS.
[152] Kees Teunissen,et al. A study on the perceptual relevance of crosstalk equations for stereoscopic displays , 2013 .
[153] Karol Myszkowski,et al. Perceptual depth compression for stereo applications , 2014, Comput. Graph. Forum.
[154] J. Sheedy,et al. Is all Asthenopia the Same? , 2003, Optometry and vision science : official publication of the American Academy of Optometry.
[155] Jeffrey Ho,et al. Shift-Map Based Stereo Image Retargeting with Disparity Adjustment , 2012, ACCV.
[156] Bohn Stafleu van Loghum,et al. Online … , 2002, LOG IN.
[157] David M. Hoffman,et al. Vergence-accommodation conflicts hinder visual performance and cause visual fatigue. , 2008, Journal of vision.
[158] Kwanghoon Sohn,et al. Visual Comfort Enhancement for Stereoscopic Video Based on Binocular Fusion Characteristics , 2013, IEEE Transactions on Circuits and Systems for Video Technology.
[159] Alan C. Bovik,et al. Stereoscopic 3D Visual Discomfort Prediction: A Dynamic Accommodation and Vergence Interaction Model , 2016, IEEE Transactions on Image Processing.
[160] Lili Wang,et al. Crosstalk Evaluation in Stereoscopic Displays , 2011, Journal of Display Technology.
[161] Yi-Pai Huang,et al. 10.2: Crosstalk Suppression by Image Processing in 3D Display , 2010 .
[162] Yong Man Ro,et al. Visual Importance- and Discomfort Region-Selective Low-Pass Filtering for Reducing Visual Discomfort in Stereoscopic Displays , 2013, IEEE Transactions on Circuits and Systems for Video Technology.
[163] Bernd Neumann,et al. Feedback between Low-level and High-level Image Processing , 2007 .
[164] Kevin J. MacKenzie,et al. Accommodation to multiple-focal-plane displays: Implications for improving stereoscopic displays and for accommodation control. , 2010, Journal of vision.
[165] Alan C. Bovik,et al. Transfer Function Model of Physiological Mechanisms Underlying Temporal Visual Discomfort Experienced When Viewing Stereoscopic 3D Images , 2015, IEEE Transactions on Image Processing.
[166] Hang-Bong Kang,et al. A New Visual Comfort-Based Stereoscopic Image Retargeting Method , 2013, ISVC.
[167] A. Solimini. Are There Side Effects to Watching 3D Movies? A Prospective Crossover Observational Study on Visually Induced Motion Sickness , 2013, PloS one.
[168] M. Gross,et al. Nonlinear disparity mapping for stereoscopic 3D , 2010, ACM Trans. Graph..
[169] Leonid P. Yaroslavsky,et al. Three methods that improve the visual quality of colour anaglyphs , 2005 .
[170] Sehoon Yea,et al. Content-Driven Retargeting of Stereoscopic Images , 2013, IEEE Signal Processing Letters.
[171] Filippo Speranza,et al. Effect of disparity and motion on visual comfort of stereoscopic images , 2006, Electronic Imaging.
[172] Wijnand A. IJsselsteijn,et al. Visual discomfort of 3D TV: Assessment methods and modeling , 2011, Displays.
[173] Touradj Ebrahimi,et al. Subjective evaluation of an active crosstalk reduction system for mobile autostereoscopic displays , 2014, Electronic Imaging.
[174] Alex D. Hwang,et al. Instability of the perceived world while watching 3D stereoscopic imagery: A likely source of motion sickness symptoms , 2014, i-Perception.
[175] Dongkyung Nam,et al. A Unified Method for Crosstalk Reduction in Multiview Displays , 2014, Journal of Display Technology.
[176] David F. McAllister,et al. Methods for computing color anaglyphs , 2010, Electronic Imaging.
[177] Jin Liu,et al. Eye and gaze tracking for visually controlled interactive stereoscopic displays , 1999, Signal Process. Image Commun..
[178] Bin Wang,et al. Depth-of-focus of the human eye in the near retinal periphery , 2003, Vision Research.
[179] Yong Man Ro,et al. Visual discomfort visualizer using stereo vision and time-of-flight depth cameras , 2012, IEEE Transactions on Consumer Electronics.
[180] Truong Q. Nguyen,et al. Modeling, Prediction, and Reduction of 3D Crosstalk in Circular Polarized Stereoscopic LCDs , 2015, IEEE Transactions on Image Processing.
[181] Efstathios Stavrakis,et al. The effects of fast disparity adjustment in gaze-controlled stereoscopic applications , 2014, ETRA.
[182] Ali Borji,et al. Computational Modeling of Top-down Visual Attention in Interactive Environments , 2011, BMVC.
[183] Robert S. Allison,et al. Gaze-contingent depth of field in realistic scenes: the user experience , 2014, ETRA.
[184] Kwanghoon Sohn,et al. Visual fatigue modeling and analysis for stereoscopic video , 2012 .
[185] Hans-Peter Seidel,et al. A perceptual model for disparity , 2011, ACM Trans. Graph..
[186] T. Okoshi,et al. Three-dimensional displays , 1980, Proceedings of the IEEE.
[187] Richard Szeliski,et al. The lumigraph , 1996, SIGGRAPH.
[188] Hans-Peter Seidel,et al. Modeling and optimizing eye vergence response to stereoscopic cuts , 2014, ACM Trans. Graph..
[189] WinklerStefan,et al. Stereo/multiview picture quality , 2013 .
[190] Kevin J. MacKenzie,et al. Vergence and accommodation to multiple-image-plane stereoscopic displays: "real world" responses with practical image-plane separations? , 2012, J. Electronic Imaging.
[191] Gordon Wetzstein,et al. Display adaptive 3D content remapping , 2013, Comput. Graph..
[192] Mtm Marc Lambooij,et al. Visual Discomfort and Visual Fatigue of Stereoscopic Displays: A Review , 2009 .
[193] Bernd Jähne,et al. Stereo Ground Truth with Error Bars , 2014, ACCV.
[194] Martin S Banks,et al. Temporal presentation protocols in stereoscopic displays: Flicker visibility, perceived motion, and perceived depth , 2011, Journal of the Society for Information Display.
[195] Yi Liu,et al. A retargeting method for stereoscopic 3D video , 2015, Computational Visual Media.
[196] Liang Xu,et al. Visual fatigue and discomfort after stereoscopic display viewing , 2013, Acta ophthalmologica.
[197] Nassir Navab,et al. The effect of out-of-focus blur on visual discomfort when using stereo displays , 2010, 2010 IEEE International Symposium on Mixed and Augmented Reality.
[198] Peter A Howarth,et al. Potential hazards of viewing 3‐D stereoscopic television, cinema and computer games: a review , 2011, Ophthalmic & physiological optics : the journal of the British College of Ophthalmic Opticians.
[199] Kevin J. MacKenzie,et al. Vergence and accommodation to multiple-image-plane stereoscopic displays: 'Real world' responses with practical image-plane separations? , 2011, Electronic Imaging.
[200] Takashi Shibata,et al. Comfortable stereo viewing on mobile devices , 2013, Electronic Imaging.
[201] David F. McAllister,et al. Producing anaglyphs from synthetic images , 2003, IS&T/SPIE Electronic Imaging.
[202] Yung-Yu Chuang,et al. Content-Aware Display Adaptation and Interactive Editing for Stereoscopic Images , 2011, IEEE Transactions on Multimedia.
[203] Margrit Gelautz,et al. Linear Optimization Approach for Depth Range Adaption of Stereoscopic Videos , 2016 .
[204] Xinzhu Sang,et al. Visual fatigue evaluation based on depth in 3D videos , 2013, Other Conferences.
[205] S. Kitrosser. Photography in the Service of Stereoscopy : 3-D imaging , 1998 .
[206] Lothar Hotz,et al. Interpreting Structures in Man-made Scenes - Combining Low-Level and High-Level Structure Sources , 2010, ICAART.
[207] Fumio Kishino,et al. Proposal for a 3‐D display with accommodative compensation: 3DDAC , 1996 .
[208] Bernard Mendiburu,et al. 3D Movie Making: Stereoscopic Digital Cinema from Script to Screen , 2009 .