Criminisi, A.,
Perez, P.,
Toyama, K.,
Region Filling and Object Removal by Exemplar-Based Image Inpainting,
IP(13), No. 9, September 2004, pp. 1200-1212.
IEEE DOI Link
0409
BibRef
Earlier:
Object removal by exemplar-based inpainting,
CVPR03(II: 721-728).
IEEE Abstract.
0307
BibRef
Criminisi, A.,
Blake, A.,
The SPS algorithm: patching figural continuity and transparency by
split-patch search,
CVPR04(I: 342-349).
IEEE Abstract.
0408
BibRef
Berestov, A.L.[Alexander L.],
Detection and removal of image occlusion errors,
US_Patent6,865,289, Mar 8, 2005
WWW Version.
BibRef
0503
Kokaram, A.C.,
Collis, B.,
Robinson, S.,
Automated rig removal with Bayesian motion interpolation,
VISP(152), No. 4, August 2005, pp. 407-414.
WWW Version.
0512
Remove signs of support apparatus after filming.
BibRef
Hsu, H.J.,
Wang, J.F.,
Liao, S.C.,
A Hybrid Algorithm With Artifact Detection Mechanism for Region Filling
After Object Removal From a Digital Photograph,
IP(16), No. 6, June 2007, pp. 1611-1622.
IEEE DOI Link
0706
BibRef
Maalouf, A.,
Carre, P.,
Augereau, B.,
Fernandez-Maloigne, C.,
A Bandelet-Based Inpainting Technique for Clouds Removal From Remotely
Sensed Images,
GeoRS(47), No. 7, July 2009, pp. 2363-2371.
IEEE DOI Link
0906
BibRef
McCloskey, S.[Scott],
Langer, M.S.[Michael S.],
Siddiqi, K.[Kaleem],
Removal of Partial Occlusion from Single Images,
PAMI(33), No. 3, March 2011, pp. 647-654.
IEEE DOI Link
1102
BibRef
Earlier:
Removing Partial Occlusion from Blurred Thin Occluders,
ICPR10(4400-4403).
IEEE DOI Link
1008
BibRef
Earlier:
Automated Removal of Partial Occlusion Blur,
ACCV07(I: 271-281).
Springer DOI Link
0711
BibRef
Earlier:
Seeing Around Occluding Objects,
ICPR06(I: 963-966).
IEEE DOI Link
0609
By modeling object radiance.
BibRef
Langer, M.S.[Michael S.],
Surface Visibility Probabilities in 3D Cluttered Scenes,
ECCV08(I: 401-412).
Springer DOI Link
0810
BibRef
Vetter, S.[Sebastian],
Grzegorzek, M.[Marcin],
Paulus, D.[Dietrich],
Wavelet-Based Inpainting for Object Removal from Image Series,
DAGM10(343-352).
Springer DOI Link
1009
BibRef
Yang, J.[Jun],
Zhu, S.J.[Shi-Jiao],
Removing Blindness Shadows from Image Based on Its Points Calculation
in High Dimensional Space,
CISP09(1-5).
IEEE DOI Link
0910
BibRef
Whyte, O.[Oliver],
Sivic, J.[Josef],
Zisserman, A.[Andrew],
Get Out of my Picture! Internet-based Inpainting,
BMVC09(xx-yy).
PDF Version.
0909
BibRef
Brand, M.[Matthew],
Image and Video Retargetting by Darting,
ICIAR09(33-42).
Springer DOI Link
0907
Analogy of tailor's darts. To fit image to reshaped frame.
More what is removed than adding info.
BibRef
Pnevmatikakis, E.A.[Eftychios A.],
Maragos, P.[Petros],
An inpainting system for automatic image structure-texture
restoration with text removal,
ICIP08(2616-2619).
IEEE DOI Link
0810
BibRef
Bruni, V.[Vittoria],
Crawford, A.J.[Andrew J.],
Kokaram, A.C.[Anil C.],
Vitulano, D.[Domenico],
Digital Removal of Blotches with Variable Semi-transparency Using
Visibility Laws,
BVAI07(254-263).
Springer DOI Link
0710
BibRef
And: A2, A1, A3, A4:
Multi-Scale Semi-Transparent Blotch Removal on Archived Photographs
using Bayesian Matting Techniques and Visibility Laws,
ICIP07(I: 561-564).
IEEE DOI Link
0709
BibRef
Eastwood, B.[Brian],
Taylor, R.M.[Russell M.],
Occlusion Removal in Video Microscopy,
CAIP07(125-132).
Springer DOI Link
0708
BibRef
Wu, J.Y.[Ji-Ying],
Ruan, Q.Q.[Qiu-Qi],
Object Removal By Cross Isophotes Exemplar-based Inpainting,
ICPR06(III: 810-813).
IEEE DOI Link
0609
BibRef
Herley, C.,
Automatic Occlusion Removal from Minimum Number of Images,
ICIP05(II: 1046-1049).
IEEE DOI Link
0512
BibRef
Fu, H.[Haoying],
Zha, H.Y.[Hong-Yuan],
Barlow, J.[Jesse],
Efficient Block Noise Removal Based on Nonlinear Manifolds,
ICCV05(I: 549-556).
IEEE DOI Link
0510
Noise forms contiguous blocks. Remove it (e.g. glasses).
BibRef
Tan, P.[Ping],
Lin, S.,
Quan, L.[Long],
Shum, H.Y.[Heung-Yeung],
Highlight removal by illumination-constrained inpainting,
ICCV03(164-169).
IEEE DOI Link
0311
BibRef
Chapter on 3-D Object Description and Computation Techniques, Surfaces, Deformable, View Generation, Video Conferencing continues in
Image Based Rendering, View Generation for Video, Free-Viewpoint Video, Retargeting .