20.8.2 Tomographic Object Construction, Object Extraction, Analysis, Organs

Chapter Contents (Back)
Reconstruction. Tomography.

Herman, G.T.[Gabor T.], Rowland, S.W.[Stuart W.],
Three methods for reconstructing objects from x rays: A comparative study,
CGIP(2), No. 2, October 1973, pp. 151-178.
WWW Version. 0501
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Herman, G.T., Lakshminarayanan, A.V., Rowland, S.W.,
The reconstruction of objects from shadowgraphs with high contrasts,
PR(7), No. 4, December 1975, pp. 157-165.
WWW Version. 0309
From X-Ray shadowgraphs. Reconstruction from a limited number. BibRef

Krishnamurthy, E.V., Rao, T.M.[T. Mahadeva], Subramanian, K., Prabhu, S.S.,
Reconstruction of objects from their projections using generalized inverses,
CGIP(3), No. 4, December 1974, pp. 336-345.
WWW Version. 0501
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Wagner, W.,
Reconstruction of object layers from their X-ray projections: A simulation study,
CGIP(5), No. 4, December 1976, pp. 470-483.
WWW Version. 0501
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Selfridge, P.G., Prewitt, J.M.S.,
Organ Detection in Abdominal Computerized Tomography Scans: Application to the Kidney,
CGIP(15), No. 3, March 1981, pp. 265-278.
WWW Version. BibRef 8103

Schreiner, S., Dawant, B.M., Paschal, C.B., Galloway, R.L.,
The importance of ray pathlengths when measuring objects in maximum intensity projection images,
MedImg(15), No. 4, August 1996, pp. 568-579.
IEEE Top Reference. 0203
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Kamath, M., Chaudhuri, S., Desai, U.B.,
Direct Parametric Object Detection in Tomographic-Images,
IVC(16), No. 9-10, July 1998, pp. 669-676.
WWW Version. 9808
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Zheng, Y.B.[Yi-Bin], Doerschuk, P.C.,
3-D Image Reconstruction from Averaged Fourier Transform Magnitude by Parameter Estimation,
IP(7), No. 11, November 1998, pp. 1561-1570.
IEEE DOI Link BibRef 9811
Earlier:
Reconstruction of viruses from solution X-ray scattering data,
ICIP95(I: 434-437).
IEEE DOI Link 9510
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Zheng, Y.B.[Yi-Bin], Li, T.[Tao], Doerschuk, P.C., Johnson, J.E.,
Low resolution 3D reconstructions of viruses from X-ray crystal diffraction data,
ICIP98(III: 358-360).
IEEE DOI Link 9810
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Gao, W.[Wen], Doerschuk, P.C.,
Reconstruction problems in 3D for viral cryo electron microscopy,
ICIP98(II: 706-708).
IEEE DOI Link 9810
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Doerschuk, P.C.,
X-ray crystallographic imaging,
ICIP94(III: 538-542).
IEEE DOI Link 9411
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Brodzik, A.K.[Andrzej K.], Mooney, J.M.[Jonathan M.],
Convex Projections Algorithm for Restoration of Limited-Angle Chromotomographic Images,
JOSA-A(16), No. 2, February 1999, pp. 246-257. BibRef 9902

Koss, J.E., Newman, F.D., Johnson, T.K., Kirch, D.L.,
Abdominal organ segmentation using texture transforms and a Hopfield neural network,
MedImg(18), No. 7, July 1999, pp. 640-648.
IEEE Top Reference. 0110
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Feng, J., Bao, S.L.,
Reconstruction of smooth distributions within unsmooth circumferences from limited views using filtered-backprojection algorithm,
IJIST(12), No. 3, 2002, pp. 93-96. 0210
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Feng, H.H.[Hai-Hua], Karl, W.C.[William Clem], Castanon, D.A.[David A.],
A curve evolution approach to object-based tomographic reconstruction,
IP(12), No. 1, January 2003, pp. 44-57.
IEEE DOI Link 0301
BibRef
Earlier: A1, A3, A2:
A Curve Evolution Approach for Image Segmentation Using Adaptive Flows,
ICCV01(II: 494-499).
IEEE DOI Link 0106
BibRef
And:
Object-based Reconstruction Using Coupled Tomographic Flows,
ICIP00(Vol II: 625-628).
IEEE Abstract. 0008
BibRef
And:
Tomographic Reconstruction using Curve Evolution,
CVPR00(I: 361-366).
IEEE DOI Link 0005
BibRef

Shi, Y.G.[Yong-Gang], Karl, W.C., Castafion, D.A.,
Dynamic tomography using curve evolution with spatial-temporal regularization,
ICIP02(II: 629-632).
IEEE Abstract. 0210
BibRef

Brankov, J.G., Yang, Y.Y.[Yong-Yi], Wernick, M.N.,
Tomographic Image Reconstruction Based on a Content-Adaptive Mesh Model,
MedImg(23), No. 2, February 2004, pp. 202-212.
IEEE Abstract. 0403
BibRef
Earlier:
Content-adaptive 3D mesh modeling for representation of volumetric images,
ICIP02(III: 849-852).
IEEE Abstract. 0210
BibRef
Earlier:
Tomographic Image Reconstruction Using Content-Adaptive Mesh Modeling,
ICIP01(I: 690-693).
IEEE Abstract. 0108
See also Fast Approach for Accurate Content-Adaptive Mesh Generation, A. BibRef

Brankov, J.G., Yang, Y.Y.[Yong-Yi], Galatsanos, N.P.,
Image restoration using content-adaptive mesh modeling,
ICIP03(II: 997-1000).
IEEE Abstract. 0312
BibRef

Yang, Y.Y.[Yong-Yi], Brankov, J.G., Wernick, M.N.,
Content-adaptive mesh modeling for fully-3D tomographic image reconstruction,
ICIP02(II: 621-624).
IEEE Abstract. 0210
BibRef

Brankov, J.G.[Jovan G.], Djordjevic, J.[Jaksa], Wernick, M.N.[Miles N.], Galatsanos, N.P.[Nikolas P.],
Tomographic Image Reconstruction for Systems with Partially-Known Blur,
ICIP99(III:881-885).
IEEE Abstract. BibRef 9900

Mesarovic, V.Z., Galatsanos, N.P., Wernick, M.N.,
Iterative maximum a posteriori (MAP) restoration from partially-known blur for tomographic reconstruction,
ICIP95(II: 512-515).
IEEE DOI Link 9510
BibRef

Soussen, C., Mohammad-Djafari, A.,
Polygonal and Polyhedral Contour Reconstruction in Computed Tomography,
IP(13), No. 11, November 2004, pp. 1507-1523.
IEEE DOI Link 0411
BibRef
Earlier:
Closed Surface Reconstruction in X-ray Tomography,
ICIP01(I: 718-721).
IEEE Abstract. 0108
BibRef

Mouravliansky, N., Matsopoulos, G.K., Delibasis, K., Asvestas, P., Nikita, K.S.,
Combining a morphological interpolation approach with a surface reconstruction method for the 3-D representation of tomographic data,
JVCIR(15), No. 4, December 2004, pp. 565-579.
WWW Version. 0711
Medical interpolation; Mathematical morphology; 3-D visualization; Surface reconstruction; Marching Cubes Algorithm BibRef

Sitek, A., Huesman, R.H., Gullberg, G.T.,
Tomographic reconstruction using an adaptive tetrahedral mesh defined by a point cloud,
MedImg(25), No. 9, September 2006, pp. 1172-1179.
IEEE DOI Link 0609
BibRef

Murphy, R.J., Yan, S., O'Sullivan, J.A., Snyder, D.L., Whiting, B.R., Politte, D.G., Lasio, G., Williamson, J.F.,
Pose Estimation of Known Objects During Transmission Tomographic Image Reconstruction,
MedImg(25), No. 10, October 2006, pp. 1392-1404.
IEEE DOI Link 0609
BibRef

Balazs, P.[Peter],
A decomposition technique for reconstructing discrete sets from four projections,
IVC(25), No. 10, 1 October 2007, pp. 1609-1619.
WWW Version. 0709
Discrete tomography; Reconstruction algorithm; Decomposable discrete set; Q-convexity; hv-Convexity BibRef

Balázs, P.[Péter],
Reconstruction of Canonical hv-Convex Discrete Sets from Horizontal and Vertical Projections,
IWCIA09(280-288).
Springer DOI Link 0911
BibRef
Earlier:
Reconstruction of Binary Images with Few Disjoint Components from Two Projections,
ISVC08(II: 1147-1156).
Springer DOI Link 0812
BibRef
And:
On the Number of hv -Convex Discrete Sets,
IWCIA08(xx-yy).
Springer DOI Link 0804
BibRef
Earlier:
Generation and Empirical Investigation of hv -Convex Discrete Sets,
SCIA07(344-353).
Springer DOI Link 0706
CT Reconstructions. BibRef

Balázs, P.[Péter], Gara, M.[Mihály],
An Evolutionary Approach for Object-Based Image Reconstruction Using Learnt Priors,
SCIA09(520-529).
Springer DOI Link 0906
BibRef
Earlier:
Decision Trees in Binary Tomography for Supporting the Reconstruction of hv-Convex Connected Images,
ACIVS08(xx-yy).
Springer DOI Link 0810
BibRef

Saucan, E.[Emil], Appleboim, E.[Eli], Barak-Shimron, E.[Efrat], Lev, R.[Ronen], Zeevi, Y.Y.[Yehoshua Y.],
Local versus Global in Quasi-Conformal Mapping for Medical Imaging,
JMIV(32), No. 3, November 2008, pp. xx-yy.
Springer DOI Link 0810
BibRef

Saucan, E.[Emil], Appleboim, E.[Eli], Zeevi, Y.Y.[Yehoshua Y.],
Sampling and Reconstruction of Surfaces and Higher Dimensional Manifolds,
JMIV(30), No. 1, January 2008, pp. 105-123.
Springer DOI Link 0801
BibRef
And: JMIV(34), No. 3, July 2009, pp. xx-yy.
Springer DOI Link 0906
BibRef
Earlier:
Geometric Sampling of Manifolds for Image Representation and Processing,
SSVM07(907-918).
Springer DOI Link 0705
Sampling theorem for embedding images in manifolds. BibRef

Saucan, E., Wolansky, G., Appleboim, E., Zeevi, Y.Y.,
Combinatorial Ricci Curvature and Laplacians for Image Processing,
CISP09(1-6).
IEEE DOI Link 0910
BibRef

Appleboim, E.[Eli], Saucan, E.[Emil], Zeevi, Y.Y.[Yehoshua Y.],
Quasi-conformal Flat Representation of Triangulated Surfaces for Computerized Tomography,
CVAMIA06(155-165).
Springer DOI Link 0605
BibRef

Appleboim, E.[Eli], Saucan, E.[Emil], Zeevi, Y.Y.[Yehoshua Y.], Zeitoun, O.[Ofir],
Quasi-isometric and Quasi-conformal Development of Triangulated Surfaces for Computerized Tomography,
IWCIA06(361-374).
Springer DOI Link 0606
BibRef

Saucan, E.[Emil],
Isometric Embeddings in Imaging and Vision: Facts and Fiction,
JMIV(43), No. 2, June 2012, pp. 143-155.
WWW Version. 1204
BibRef

Baritaux, J.C., Hassler, K., Bucher, M., Sanyal, S., Unser, M.,
Sparsity-Driven Reconstruction for FDOT With Anatomical Priors,
MedImg(30), No. 5, May 2011, pp. 1143-1153.
IEEE DOI Link 1105
Isolates few anatomical regions where the fluorescent probe has accumulated. BibRef

Wang, H.[Hongkai], Stout, D.B., Chatziioannou, A.F.,
Estimation of Mouse Organ Locations Through Registration of a Statistical Mouse Atlas With Micro-CT Images,
MedImg(31), No. 1, January 2012, pp. 88-102.
IEEE DOI Link 1201
BibRef

Bagci, U., Chen, X., Udupa, J.K.,
Hierarchical Scale-Based Multiobject Recognition of 3-D Anatomical Structures,
MedImg(31), No. 3, March 2012, pp. 777-789.
IEEE DOI Link 1203
BibRef


Vantaram, S.R.[Sreenath Rao], Saber, E.[Eli], Dianat, S.[Sohail], Hu, Y.[Yang], Abhyankar, V.[Vishwas],
Semi-automatic 3-D segmentation of Computed Tomographic imagery by iterative gradient-driven volume growing,
ICIP11(2857-2860).
IEEE DOI Link 1201
BibRef

Yang, W.[Wei], Wang, X.L.[Xiao-Long], Lin, L.[Liang], Gao, C.Y.[Cheng-Ying],
Interactive CT image segmentation with online discriminative learning,
ICIP11(425-428).
IEEE DOI Link 1201
BibRef

Khalifa, F., Gimel'farb, G.L., El-Ghar, M.A.[M. Abo], Sokhadze, G., Manning, S., McClure, P., Ouseph, R., El-Baz, A.,
A new deformable model-based segmentation approach for accurate extraction of the kidney from abdominal CT images,
ICIP11(3393-3396).
IEEE DOI Link 1201
BibRef

Bhole, C.[Chetan], Morsillo, N.[Nicholas], Pal, C.[Christopher],
3D Segmentation in CT Imagery with Conditional Random Fields and Histograms of Oriented Gradients,
MLMI11(326-334).
Springer DOI Link 1109
BibRef

Guedon, J.P.[Jean-Pierre], Liu, C.L.[Chuan-Lin],
The 2 and 3 materials scene reconstructed from some line Mojette projections,
IPTA10(189-194).
IEEE DOI Link 1007
Mojette projection for more images in tomography reconstruction. BibRef

Song, S.M.[Soo-Min], Kim, M.H.[Myoung-Hee],
Segmentation of Abdominal Organs Incorporating Prior Knowledge in Small Animal CT,
ISVC10(III: 209-218).
Springer DOI Link 1011
BibRef

Ding, F.[Feng], Leow, W.K.[Wee Kheng], Venkatesh, S.[Sudhakar],
Removal of abdominal wall for 3D visualization and segmentation of organs in CT volume,
ICIP09(3377-3380).
IEEE DOI Link 0911
BibRef

Ouzounis, G.K.[Georgios K.], Giannakopoulos, S.[Stilianos], Simopoulos, C.E.[Constantinos E.], Wilkinson, M.H.F.[Michael H.F.],
Robust extraction of urinary stones from CT data using attribute filters,
ICIP09(2629-2632).
IEEE DOI Link 0911
BibRef

Gaullier, G.[Gil], Charbonnier, P.[Pierre], Heitz, F.[Fabrice],
Introducing shape priors in object-based tomographic reconstruction,
ICIP09(1077-1080).
IEEE DOI Link 0911
BibRef

Yang, H.F.[Huei-Fang], Choe, Y.S.[Yoon-Suck],
3D volume extraction of densely packed cells in EM data stack by forward and backward graph cuts,
CIMSVP09(47-52).
IEEE DOI Link 0903
BibRef

Shinohara, T.,
Segmentation of Intertwining Stringlike Objects in Three Dimensional CT Image Based on Positional Information,
IMVIP09(30-35).
IEEE DOI Link 0909
BibRef

Boukerroui, D.[Djamal], Touhami, W.[Wala], Cocquerez, J.P.[Jean Pierre],
Automatic regions of interest identification and classification in CT images: Application to kidney cysts,
IPTA08(1-8).
IEEE DOI Link 0811
BibRef

Touhami, W., Boukerroui, D., Cocquerez, J.P.,
A Statistical Approach for Automatic Kidneys Detection,
ICIP05(III: 740-743).
IEEE DOI Link 0512
BibRef

Pednekar, A.S.[Amol S.], Bandekar, A.N.[Alok N.], Kakadiaris, I.A.[Ioannis A.], Naghavi, M.[Morteza],
Automatic Segmentation of Abdominal Fat from CT Data,
WACV05(I: 308-315).
IEEE DOI Link 0502
BibRef

Kaneko, T., Gu, L., Fujimoto, H.,
Abdominal Organ Recognition Using 3d Mathematical Morphology,
ICPR00(Vol II: 263-266).
IEEE DOI Link 0009
BibRef

Lagrange, J., Dauty, I., and Azencott, R.,
Tomographic Reconstruction of Axisymmetrical Objects From One View by Model Approximation,
ICIP97(I: 492-495).
IEEE DOI Link BibRef 9700

Hohne, K.H., Bomans, M., Pommert, A., Riemer, M., Tiede, U.,
3D-segmentation and display of tomographic imagery,
ICPR88(II: 1271-1276).
IEEE DOI Link 8811
BibRef

Magnusson, M., Lenz, R., Danielsson, P.E.,
Evaluation of methods for shaded surface display of CT-volumes,
ICPR88(II: 1287-1294).
IEEE DOI Link 8811
BibRef

Chapter on Medical Applications, CAT, MRI, Ultrasound, Heart Models, Brain Models continues in
Liver Disease, Tomography, CAT Analysis .


Last update:May 16, 2012 at 20:31:07