Westenberg, M.A.[Michel A.],
Roerdink, J.B.T.M.[Jos B.T.M.],
Frequency Domain Volume Rendering by the Wavelet X-Ray Transform,
IP(9), No. 7, July 2000, pp. 1249-1261.
IEEE DOI
0006
BibRef
And:
X-ray Volume Rendering by Hierarchical Wavelet Splatting,
ICPR00(Vol III: 159-162).
IEEE DOI
0009
BibRef
Westenberg, M.A.[Michel A.],
Roerdink, J.B.T.M.[Jos B.T.M.],
An Extension of Fourier-Wavelet Volume Rendering by View Interpolation,
JMIV(14), No. 2, March 2001, pp. 103-115.
DOI Link
0106
BibRef
Westenberg, M.A.[Michel A.],
Roerdink, J.B.T.M.[Jos B.T.M.],
Wilkinson, M.H.F.,
Volumetric Attribute Filtering and Interactive Visualization Using the
Max-Tree Representation,
IP(16), No. 12, December 2007, pp. 2943-2952.
IEEE DOI
0711
BibRef
Park, J.H.[Joon Hong],
Park, H.W.[Hyun Wook],
Fast view interpolation of stereo images using image gradient and
disparity triangulation,
SP:IC(18), No. 5, May 2003, pp. 401-416.
Elsevier DOI
0304
BibRef
And:
ICIP03(I: 381-384).
IEEE DOI
0312
Gradient selects node points for triangulation of the stereo info.
BibRef
Park, J.H.[Joon Hong],
Park, H.W.[Hyun Wook],
A Mesh-Based Disparity Representation Method for View Interpolation and
Stereo Image Compression,
IP(15), No. 7, July 2006, pp. 1751-1762.
IEEE DOI
0606
BibRef
Geys, I.[Indra],
Van Gool, L.J.[Luc J.],
On-line, interactive view synthesis and augmentation,
SP:IC(21), No. 9, October 2006, pp. 709-723.
Elsevier DOI
0611
BibRef
Earlier:
On-Line Novel View Synthesis Capable of Handling Multiple Moving
Objects,
CVHCI05(150).
Springer DOI
0601
BibRef
And:
Hierarchical coarse to fine depth estimation for realistic view
interpolation,
3DIM05(237-244).
IEEE DOI
0508
View synthesis; Multi-camera; Graphical board; Interactive; Augmentation
BibRef
Geys, I.[Indra],
Van Gool, L.J.[Luc J.],
View synthesis by the parallel use of GPU and CPU,
IVC(25), No. 7, 1 July 2007, pp. 1154-1164.
Elsevier DOI
0705
View synthesis; Multi-camera; Graphical board; Depth map; Graph-cut
BibRef
Geys, I.,
Koninckx, T.P.,
Van Gool, L.J.,
Fast Interpolated Cameras by Combining a GPU Based Plane Sweep with a
Max-Flow Regularisation Algorithm,
3DPVT04(534-541).
IEEE DOI
0412
BibRef
Ince, S.[Serdar],
Konrad, J.[Janusz],
Occlusion-Aware View Interpolation,
JIVP(2008), No. 2008, pp. xx-yy.
DOI Link
0903
See also Occlusion-Aware Optical Flow Estimation.
BibRef
Jarusirisawad, S.[Songkran],
Saito, H.[Hideo],
3DTV view generation using uncalibrated pure rotating and zooming
cameras,
SP:IC(24), No. 1-2, January 2009, pp. 17-30.
Elsevier DOI
0902
BibRef
Earlier:
3DTV View Generation Using Uncalibrated Cameras,
3DTV08(57-60).
IEEE DOI
0805
BibRef
Earlier:
Diminished Reality Via Multiple Hand-Held CAMERAS,
ICDSC07(251-258).
IEEE DOI
0709
Free viewpoint video; View interpolation; Projective grid space; Trifocal tensor
BibRef
Saito, H.[Hideo],
Baba, S.[Shigeyuki],
Kimura, M.[Makoto],
Vedula, S.[Sundar],
Kanade, T.[Takeo],
Appearance-Based Virtual View Generation of
Temporally-Varying Events from Multi-Camera Images
in the 3D Room,
3DIM99(516-525).
IEEE DOI
BibRef
9900
And:
CMU-CS-TR--99-127, April 1999.
HTML Version.
BibRef
Haseyama, M.[Miki],
Takizawa, M.[Makoto],
Yamamoto, T.[Takashi],
Video Frame Interpolation by Image Morphing Including Fully Automatic
Correspondence Setting,
IEICE(E92-D), No. 10, October 2009, pp. 2163-2166.
WWW Link.
0910
BibRef
Song, K.W.[Kwan-Woong],
Chung, T.Y.[Tae-Young],
Oh, Y.J.[Yun-Je],
Kim, C.S.[Chang-Su],
Error concealment of multi-view video sequences using inter-view and
intra-view correlations,
JVCIR(20), No. 4, May 2009, pp. 281-292.
Elsevier DOI
0905
BibRef
Earlier: A2, A1, A3, Only:
Compression of 2-D wide multi-view video sequences using view
interpolation,
ICIP08(2440-2443).
IEEE DOI
0810
Multi-view video; Error concealment; Hierarchical B prediction;
Bilateral motion estimation; Multi-hypothesis prediction; Robust video
transmission; Error propagation; Mode selection
BibRef
Chung, T.Y.[Tae-Young],
Jung, I.L.[Il-Lyong],
Song, K.W.[Kwan-Woong],
Kim, C.S.[Chang-Su],
Multi-view video coding with view interpolation prediction for 2D
camera arrays,
JVCIR(21), No. 5-6, July-August 2010, pp. 474-486.
Elsevier DOI
1007
BibRef
Earlier: A2, A1, A3, A4:
Virtual view synthesis using multi-view video sequences,
ICIP09(2341-2344).
IEEE DOI
0911
Multi-view video coding; Hierarchical B prediction; View
interpolation; Bilateral criterion; 2D camera array; 3D-TV; H.264/AVC
BibRef
Chung, T.Y.[Tae-Young],
Sim, J.Y.[Jae-Young],
Kim, C.S.[Chang-Su],
Bit Allocation Algorithm With Novel View Synthesis Distortion Model
for Multiview Video Plus Depth Coding,
IP(23), No. 8, August 2014, pp. 3254-3267.
IEEE DOI
1408
quantisation (signal)
BibRef
Jang, W.D.[Won-Dong],
Chung, T.Y.[Tae-Young],
Sim, J.Y.[Jae-Young],
Kim, C.S.[Chang-Su],
FDQM: Fast Quality Metric for Depth Maps Without View Synthesis,
CirSysVideo(25), No. 7, July 2015, pp. 1099-1112.
IEEE DOI
1507
Complexity theory
BibRef
Chung, T.Y.[Tae-Young],
Jang, W.D.[Won-Dong],
Kim, C.S.[Chang-Su],
Efficient depth video coding based on view synthesis distortion
estimation,
VCIP12(1-4).
IEEE DOI
1302
BibRef
Jarusirisawad, S.[Songkran],
Nozick, V.[Vincent],
Saito, H.[Hideo],
Real-time video-based rendering from uncalibrated cameras using
plane-sweep algorithm,
JVCIR(21), No. 5-6, July-August 2010, pp. 577-585.
Elsevier DOI
1007
BibRef
Earlier: A1, A3, A2:
Real-time free viewpoint video from uncalibrated cameras using
plane-sweep algorithm,
3DIM09(1740-1747).
IEEE DOI
0910
Video-based rendering; Free viewpoint video; Plane-sweep; Projective
grid space; Real-time; Graphics processing unit (GPU); View
interpolation; Uncalibrated cameras
BibRef
Shih, T.K.[Timothy K.],
Tang, N.C.[Nick C.],
Tsai, J.C.[Joseph C.],
Hwang, J.N.,
Video Motion Interpolation for Special Effect Applications,
SMC-C(41), No. 5, September 2011, pp. 720-732.
IEEE DOI
1109
BibRef
Shih, T.K.[Timothy K.],
Tsai, J.C.[Joseph C.],
Tang, N.C.[Nick C.],
Chang, S.M.[Shih-Ming],
Lin, Y.Y.[Yaurice Y.],
Video Forgery and Special Effect Production,
IVIC09(35-37).
Springer DOI
0911
BibRef
Huang, C.T.,
Wang, Y.W.,
Huang, L.R.,
Chin, J.,
Chen, L.G.,
Fast Physically Correct Refocusing for Sparse Light Fields Using
Block-Based Multi-Rate View Interpolation,
IP(26), No. 2, February 2017, pp. 603-618.
IEEE DOI
1702
image restoration
BibRef
Schedl, D.C.[David C.],
Birklbauer, C.[Clemens],
Bimber, O.[Oliver],
Optimized sampling for view interpolation in light fields using local
dictionaries,
CVIU(168), 2018, pp. 93-103.
Elsevier DOI
1804
Light fields, Sampling, View interpolation, Superresolution, Compressed sensing
BibRef
Kaviani, H.R.[Hoda Rezaee],
Shirani, S.[Shahram],
Iterative mask generation method for handling occlusion in optical
flow assisted view interpolation,
ICIP15(3387-3391)
IEEE DOI
1512
View interpolation; image based rendering; optical flow; view synthesis
BibRef
Zhang, C.,
Li, Z.,
Cheng, Y.,
Cai, R.,
Chao, H.,
Rui, Y.,
MeshStereo: A Global Stereo Model with Mesh Alignment Regularization
for View Interpolation,
ICCV15(2057-2065)
IEEE DOI
1602
Computational modeling
BibRef
Sakurikar, P.[Parikshit],
Narayanan, P.J.,
Dense View Interpolation on Mobile Devices Using Focal Stacks,
IWMV14(138-143)
IEEE DOI
1409
Mobile computational photography
BibRef
Pujades, S.[Sergi],
Devernay, F.[Frederic],
Viewpoint interpolation: Direct and variational methods,
ICIP14(5407-5411)
IEEE DOI
1502
Image color analysis
BibRef
Mao, Y.[Yu],
Cheung, G.[Gene],
Ji, Y.S.[Yu-Sheng],
Image interpolation for DIBR view-synthesis using graph fourier
transform,
3DTV-CON14(1-4)
IEEE DOI
1409
Fourier transforms
BibRef
Dziembowski, A.,
Grzelka, A.,
Mieloch, D.,
Stankiewicz, O.,
Domanski, M.,
Enhancing view synthesis with image and depth map upsampling,
WSSIP17(1-4)
IEEE DOI
1707
Cameras, Gain, Interpolation, Software, Software algorithms, TV,
Transform coding, Depth Map Upsampling,
Free-Viewpoint Television, View, Synthesis
BibRef
Dziembowski, A.,
Domanski, M.,
Grzelka, A.,
Mieloch, D.,
Stankowski, J.,
Wegner, K.,
The influence of a lossy compression on the quality of estimated
depth maps,
WSSIP16(1-4)
IEEE DOI
1608
cameras
BibRef
Domanski, M.,
Dziembowski, A.,
Kuehn, A.,
Kurc, M.,
Luczak, A.,
Mieloch, D.,
Siast, J.,
Stankiewicz, O.,
Wegner, K.,
Experiments on acquisition and processing of video for free-viewpoint
television,
3DTV-CON14(1-4)
IEEE DOI
1409
digital television
BibRef
Takahashi, K.[Keita],
View interpolation sensitive to pixel positions,
ICIP13(2207-2211)
IEEE DOI
1402
Stereo images;view interpolation
BibRef
Yao, Q.,
Nonaka, K.,
Sankoh, H.[Hiroshi],
Naito, S.[Sei],
Robust moving camera calibration for synthesizing free viewpoint
soccer video,
ICIP16(1185-1189)
IEEE DOI
1610
Calibration
BibRef
Yamada, K.[Kentaro],
Sankoh, H.[Hiroshi],
Sugano, M.[Masaru],
Naito, S.[Sei],
Occlusion robust free-viewpoint video synthesis based on
inter-camera/-frame interpolation,
ICIP13(2072-2076)
IEEE DOI
1402
Free-viewpoint; HOG; Particle Filter; Segmentation; Tracking
BibRef
Seo, D.H.[Do-Hyung],
Ho, J.[Jeffrey],
Vemuri, B.C.[Baba C.],
Computing Diffeomorphic Paths for Large Motion Interpolation,
CVPR13(1227-1232)
IEEE DOI
1309
interpolate intermediate frames of frame-sub-sampled video sequences.
BibRef
Kubota, A.[Akira],
Hamanaka, T.[Tomohito],
Hatori, Y.[Yoshinori],
View Interpolation using defocused stereo images:
A space-invariant filtering approach,
ICIP09(2349-2352).
IEEE DOI
0911
BibRef
Lim, H.S.[Han-Shin],
Kim, S.H.[Seok-Hoon],
Lee, Y.G.[Yun-Gu],
Park, H.W.[Hyun-Wook],
A Simultaneous View Interpolation and Multiplexing Method using Stereo
Image Pairs for Lenticular Display,
ICIP07(V: 205-208).
IEEE DOI
0709
BibRef
Kubota, A.,
Kodama, K.,
Hatori, Y.,
Deconvolution Method for View Interpolation Using Multiple Images of
Circular Camera Array,
ICIP06(1049-1052).
IEEE DOI
0610
See also Reconstructing Arbitrarily Focused Images From Two Differently Focused Images Using Linear Filters.
BibRef
Jiang, G.Y.[Gang-Yi],
Yu, M.[Mei],
Ye, X.[Xien],
Fan, L.Z.[Liang-Zhong],
Fu, R.,
New Method of Ray-Space Interpolation for Free Viewpoint Video,
ICIP05(II: 1138-1141).
IEEE DOI
0512
BibRef
Matsumura, A.,
Naito, S.,
Kawada, R.,
Koike, A.,
Matsumoto, S.,
Effective interpolation for free viewpoint images using multi-layered
dynamic background buffers,
ICIP04(II: 1377-1380).
IEEE DOI
0505
BibRef
Luo, H.T.[Hui-Tao],
Eleftheriadis, A.[Alexandros],
Spatial Temporal Active Contour Interpolation for Semi-automatic Video
Object Generation,
ICIP99(II:944-948).
IEEE DOI
BibRef
9900
Manning, R.A.[Russell A.],
Dyer, C.R.[Charles R.],
Interpolating View and Scene Motion by Dynamic View Morphing,
CVPR99(I: 388-394).
IEEE DOI
BibRef
9900
And:
Interpolating View and Scene Motion by Dynamic Morphing,
DARPA98(323-330).
BibRef
Grammalidis, N.,
Tzovarns, D.,
Strintzis, M.G.,
Temporal frame interpolation for stereoscopic sequences using
object-based motion estimation and occlusion detection,
ICIP95(II: 382-385).
IEEE DOI
9510
BibRef
Grammalidis, N.,
Strintzis, M.G.,
Disparity and occlusion estimation for multiview image sequences using
dynamic programming,
ICIP96(II: 337-340).
IEEE DOI
9610
BibRef
Williams, L.,
Chen, E.,
View Interpolation for Image Synthesis,
SIGGraph-93(xx-yy).
BibRef
9300
Hlavác, V.[Václav],
Pajdla, T.[Tomás],
Sára, R.[Radim],
Svoboda, T.[Tomás],
Urban, M.[Martin],
Werner, T.[Tomás],
Scene Reconstruction From Images,
CAIP99(383-384).
Springer DOI
9909
BibRef
Werner, T.[Tomás],
Hersch, R.D.[Roger David],
Hlavác, V.[Václav],
Rendering Real-World Objects Using View Interpolation,
ICCV95(957-962).
IEEE DOI
BibRef
9500
Earlier:
Rendering real-world objects without 3-D model,
CAIP95(146-153).
Springer DOI
9509
View Interpolation. Generate the other views from 2 2-D views.
BibRef
Hsu, R.,
Kodama, K.,
Harashima, H.,
View interpolation using epipolar plane images,
ICIP94(II: 745-749).
IEEE DOI
9411
BibRef
Thobie, S.A.,
An advanced interpolation for synthetical animation,
ICIP94(III: 562-566).
IEEE DOI
9411
BibRef
Huang, J.,
Mersereau, R.M.,
Multi-frame pel-recursive motion estimation for video image
interpolation,
ICIP94(II: 267-271).
IEEE DOI
9411
BibRef
Monaco, J.W.,
Smith, M.J.T.,
An image warping approach to image sequence interpolation,
ICIP94(I: 338-342).
IEEE DOI
9411
BibRef
Chapter on 3-D Object Description and Computation Techniques, Surfaces, Deformable, View Generation, Video Conferencing continues in
Image Based Rendering for Retargeting .