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Shafer, S.A.[Steven A.],
Kanade, T.[Takeo],
The measurement of highlights in color images,
IJCV(2), No. 1, June 1988, pp. 7-32.
Springer DOI Link
HTML Version.
BibRef
8806
And:
Image Segmentation and Reflection Analysis Through Color,
DARPA88(838-853).
BibRef
Earlier:
Using a Color Reflection Model to Separate Highlights from Object Color,
ICCV87(145-150).
BibRef
And:
DARPA87(614-619) with color enclosures.
BibRef
And:
Color Image Analysis with an Intrinsic Reflection Model,
ICCV88(292-296).
IEEE Abstract.
Segmentation, Color. Do the color calibration using the highlights, then map the colors
to the real color and easily segment. Continuing
Shafer's work in color and calibrated imaging.
See also Physical Approach to Color Image Understanding, A.
BibRef
Ikeuchi, K.,
Surface Reflection Mechanism,
HPRIP-CV94(131-160).
See also Surface Reflection: Physical and Geometrical Perspectives.
BibRef
9400
Nayar, S.K.,
Bolle, R.M.,
Reflectance Based Object Recognition,
IJCV(17), No. 3, March 1996, pp. 219-240.
Springer DOI Link
BibRef
9603
Earlier:
Object Recognition Based on Reflectance and Geometry,
SPIE(2031), 1993, pp. 328-342.
BibRef
Nayar, S.K., and
Bolle, R.M.,
Computing Reflectance Ratios from an Image,
PR(26), No. 10, October 1993, pp. 1529-1542.
WWW Version.
BibRef
9310
And:
Reflectance Ratio: A Photometric Invariant for Object Recognition,
ICCV93(280-285).
IEEE DOI Link
BibRef
And:
Reflectance Based Recognition,
DARPA93(867-872).
Recognnition using region values and reflectance invariants.
BibRef
Nayar, S.K., and
Gong, Y.,
Colored Interreflections and Shape Recovery,
DARPA92(333-343).
Reflections cause different colors.
Albedo comes out >1.0 due to reflections.
BibRef
9200
Tominaga, S.,
Surface Identification Using the Dichromatic Reflection Model,
PAMI(13), No. 7, July 1991, pp. 658-670.
IEEE Abstract.
IEEE DOI Link
BibRef
9107
Earlier:
A color classification method for color images using a uniform color
space,
ICPR90(I: 803-807).
IEEE DOI Link
9006
Analysis of reflections from specular and diffuse reflections.
BibRef
Lee, H.C.,
Breneman, E.J., and
Schulte, C.P.,
Modeling Light Reflection for Computer Color Vision,
PAMI(12), No. 4, April 1990, pp. 402-409.
IEEE Abstract.
IEEE DOI Link How does it compare to Shafer's work?
BibRef
9004
Xia, M.Y.,
Chan, C.H.,
Li, S.Q.[Shu-Qing],
Hu, J.L.[Jin-Lin],
Tsang, L.[Leung],
Wavelet-based simulations of electromagnetic scattering from
large-scale two-dimensional perfectly conducting random rough surfaces,
GeoRS(39), No. 4, April 2001, pp. 718-725.
IEEE Top Reference.
0105
BibRef
Sakurai, M.[Masato],
Ayama, M.[Miyoshi],
Kumagai, T.[Takeshi],
Color Appearance in the Entire Visual Field:
Color Zone Map Based on the Unique Hue Component,
JOSA-A(20), No. 11, November 2003, pp. 1997-2009.
WWW Version.
0311
BibRef
Xin, J.H.[John H.],
Shen, H.L.[Hui-Liang],
Accurate color synthesis of three-dimensional objects in an image,
JOSA-A(21), No. 5, May 2004, pp. 713-723.
WWW Version.
0409
BibRef
Jylha, L.,
Sihvola, A.H.,
Numerical Modeling of Disordered Mixture Using Pseudorandom Simulations,
GeoRS(43), No. 1, January 2005, pp. 59-64.
IEEE Abstract.
0501
Electrostatic effective permittivity of samples of three-dimensional
random material consisting of equisized spheres is analyzed
numerically.
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Chandra, K.[Kartik],
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Estimating visible through near-infrared spectral reflectance from a
sensor radiance spectrum,
JOSA-A(21), No. 10, October 2004, pp. 1825-1833.
WWW Version.
0501
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Kutulakos, K.N.[Kiriakos N.],
Steger, E.[Eron],
A Theory of Refractive and Specular 3D Shape by Light-Path
Triangulation,
IJCV(76), No. 1, January 2008, pp. 13-29.
Springer DOI Link
0712
BibRef
Earlier:
ICCV05(II: 1448-1455).
IEEE DOI Link
0510
Award, Marr Prize, HM.
BibRef
Kutulakos, K.N.[Kiriakos N.],
Refractive and Specular 3D Shape by Light-Path Reconstruction,
CREST05(86-93).
WWW Version.
0505
BibRef
Seitz, S.M.[Steven M.],
Matsushita, Y.[Yasuyuki],
Kutulakos, K.N.[Kiriakos N.],
A Theory of Inverse Light Transport,
ICCV05(II: 1440-1447).
IEEE DOI Link
0510
BibRef
Kutulakos, K.N.[Kiriakos N.],
Light Transport Analysis for 3D Photography,
3DIM07(337-337).
IEEE DOI Link
0708
BibRef
Inamura, T.[Taisuke],
Shioiri, S.[Satoshi],
Tsujimura, S.I.[Sei-Ichi],
Yaguchi, H.[Hirohisa],
Nonlinear two-stage model for color discrimination,
JOSA-A(28), No. 4, April 2011, pp. 704-712.
WWW Version.
1104
Extend 2 stage color to wider conditions.
See:
See also Chromatic contrast discrimination: Data and prediction for stimuli varying in L and M cone excitation.
BibRef
Fujiwara, H.[Hisanaga],
Intrinsic Color Acquisition By Active Color Lighting,
MVA09(459-).
PDF Version.
0905
BibRef
Terado, I.[Ikuo],
Tachino, R.[Ryuuya],
Kenmochi, Y.[Yukiko],
Kotani, K.[Kazunori],
Reflection and Transparency Model of Rose Petals for Computer Graphics
based on the Micro-Scopic Scale Structures,
ICIP99(III:593-596).
IEEE Abstract.
BibRef
9900
Pitié, F.[François],
Kokaram, A.C.[Anil C.],
Dahyot, R.[Rozenn],
N-Dimensional Probablility Density Function Transfer and its
Application to Colour Transfer,
ICCV05(II: 1434-1439).
IEEE DOI Link
0510
BibRef
Jang, Y.,
Identification of Interreflection in Color Images Using
a Physics-Based Reflection Model,
CVPR91(632-637).
IEEE Abstract.
BibRef
9100
Chapter on Computational Vision, Regularization, Connectionist, Morphology, Scale-Space, Perceptual Grouping, Wavelets, Color, Sensors, Optical, Laser, Radar continues in
Color Correction, Weather Effects .