20.10.3.1 Medical Applications -- Coronary Arteries, Carotid Arteries

Chapter Contents (Back)
Coronary Artery. Blood Vessels.

Coppini, G., Demi, M., Poli, R., Valli, G.,
An artificial vision system for X-ray images of human coronary trees,
PAMI(15), No. 2, February 1993, pp. 156-162.
IEEE Abstract.
IEEE DOI Link 0401
BibRef

Chen, S.Y.J., Carroll, J.D.,
3-D reconstruction of coronary arterial tree to optimize angiographic visualization,
MedImg(19), No. 4, April 2000, pp. 318-336.
IEEE Top Reference. 0110
BibRef

Chen, S.Y.J., Carroll, J.D., Messenger, J.C.,
Quantitative analysis of reconstructed 3-d coronary arterial tree and intracoronary devices,
MedImg(21), No. 7, July 2002, pp. 724-740.
IEEE Top Reference. 0210
BibRef

Chen, S.Y.J., Carroll, J.D.,
Kinematic and deformation analysis of 4-D coronary arterial trees reconstructed from cine angiograms,
MedImg(22), No. 6, June 2003, pp. 710-721.
IEEE Abstract. 0308
BibRef

Dorsaz, P.A., Dorsaz, L., Doriot, P.A.,
The effect of image distortion on 3-D reconstruction of coronary bypass grafts from angiographic views,
MedImg(19), No. 7, July 2000, pp. 759-762.
IEEE Top Reference. 0110
BibRef

Greenspan, H., Laifenfeld, M., Einav, S., Barnea, O.,
Evaluation of center-line extraction algorithms in quantitative coronary angiography,
MedImg(20), No. 9, September 2001, pp. 928-941.
IEEE Top Reference. 0110
BibRef

Kayikcioglu, T.[Temel], Gangal, A.[Ali], Turhal, M.[Mehmet], Kose, C.[Cemal],
A surface-based method for detection of coronary vessel boundaries in poor quality X-ray angiogram images,
PRL(23), No. 7, May 2002, pp. 783-802.
Elsevier DOI Link 0203
BibRef

Haraguchi, R.[Ryo], Sugimoto, N.[Naozo], Eiho, S.[Shigeru], Ishida, Y.[Yoshio],
Three Dimensional Reconstruction of Coronary Arteries by Using Registration and Texture-mapping onto Epicardial Surface on Nuclear 3d Image,
IJIG(3), No. 4, October 2003, pp. 567-587. 0310
BibRef

Luo, Z.C.[Zhong-Chi], Wang, Y.Y.[Yuan-Yuan], Wang, W.Q.[Wei-Qi],
Estimating coronary artery lumen area with optimization-based contour detection,
MedImg(22), No. 4, April 2003, pp. 564-566.
IEEE Abstract. 0306
BibRef

Barratt, D.C., Ariff, B.B., Humphries, K.N., Thom, S.A.M.G., Hughes, A.D.,
Reconstruction and quantification of the carotid artery bifurcation from 3-D ultrasound images,
MedImg(23), No. 5, May 2004, pp. 567-583.
IEEE Abstract. 0406
BibRef

Wahle, A., Olszewski, M.E., Sonka, M.,
Interactive Virtual Endoscopy in Coronary Arteries Based on Multimodality Fusion,
MedImg(23), No. 11, November 2004, pp. 1391-1403.
IEEE Abstract. 0411
BibRef

Blondel, C.[Christophe], Malandain, G.[Grégoire], Vaillant, R.[Régis], Ayache, N.J.[Nicholas J.],
Reconstruction of Coronary Arteries From a Single Rotational X-Ray Projection Sequence,
MedImg(25), No. 5, May 2006, pp. 653-663.
IEEE DOI Link 0605
BibRef
Earlier:
Reconstruction of Coronary Arteries from One Rotational X-Ray Projection Sequence,
INRIARR-5214, 2004.
HTML Version. BibRef

Perrenot, B., Vaillant, R., Prost, R., Finet, G., Douek, P., Peyrin, F.,
Motion Correction for Coronary Stent Reconstruction From Rotational X-ray Projection Sequences,
MedImg(26), No. 10, October 2007, pp. 1412-1423.
IEEE DOI Link 0711
BibRef

Santhiyakumari, N., Madheswaran, M.,
Non-invasive evaluation of carotid artery wall thickness using improved dynamic programming technique,
SIViP(2), No. 2, June 2008, pp. xx-yy.
Springer DOI Link 0711
BibRef

Yang, J., Wang, Y., Liu, Y., Tang, S., Chen, W.,
Novel Approach for 3-D Reconstruction of Coronary Arteries From Two Uncalibrated Angiographic Images,
IP(18), No. 7, July 2009, pp. 1563-1572.
IEEE DOI Link 0906
BibRef

Isgum, I., Staring, M., Rutten, A., Prokop, M., Viergever, M.A., van Ginneken, B.,
Multi-Atlas-Based Segmentation With Local Decision Fusion: Application to Cardiac and Aortic Segmentation in CT Scans,
MedImg(28), No. 7, July 2009, pp. 1000-1010.
IEEE DOI Link 0906
BibRef

Jiang, J.F.[Jing-Feng], Varghese, T., Brace, C.L., Madsen, E.L., Hall, T.J., Bharat, S., Hobson, M.A., Zagzebski, J.A., Lee, F.T.,
Young's Modulus Reconstruction for Radio-Frequency Ablation Electrode-Induced Displacement Fields: A Feasibility Study,
MedImg(28), No. 8, August 2009, pp. 1325-1334.
IEEE DOI Link 0909
BibRef

Hernandez-Sabate, A., Gil, D., Fernandez-Nofrerias, E., Radeva, P.I., Marti, E.,
Approaching Artery Rigid Dynamics in IVUS,
MedImg(28), No. 11, November 2009, pp. 1670-1680.
IEEE DOI Link 0911
BibRef

Gil, D., Radeva, P.I., Saludes, J.,
Segmentation of Artery Wall in Coronary IVUS Images: A Probabilistic Approach,
ICPR00(Vol IV: 352-355).
IEEE DOI Link 0009
BibRef

Manzke, R., Meyer, C., Ecabert, O., Peters, J., Noordhoek, N.J., Thiagalingam, A., Reddy, V.Y., Chan, R.C., Weese, J.,
Automatic Segmentation of Rotational X-Ray Images for Anatomic Intra-Procedural Surface Generation in Atrial Fibrillation Ablation Procedures,
MedImg(29), No. 2, February 2010, pp. 260-272.
IEEE DOI Link 1002
BibRef

Schaap, M., van Walsum, T., Neefjes, L., Metz, C., Capuano, E., de Bruijne, M., Niessen, W.,
Robust Shape Regression for Supervised Vessel Segmentation and its Application to Coronary Segmentation in CTA,
MedImg(30), No. 11, November 2011, pp. 1974-1986.
IEEE DOI Link 1111
BibRef


Serradell, E.[Eduard], Romero, A.[Adriana], Leta, R.[Ruben], Gatta, C.[Carlo], Moreno-Noguer, F.[Francesc],
Simultaneous correspondence and non-rigid 3D reconstruction of the coronary tree from single X-ray images,
ICCV11(850-857).
IEEE DOI Link 1201
BibRef

Pal, D.[Debabrata], Chakraborty, C.[Chandan], Mandana, K.M.,
Data mining approach for coronary artery disease screening,
ICIIP11(1-6).
IEEE DOI Link 1112
BibRef

Lu, X.G.[Xiao-Guang], Chen, T.[Terrence], Comaniciu, D.[Dorin],
Robust discriminative wire structure modeling with application to stent enhancement in fluoroscopy,
CVPR11(1121-1127).
IEEE DOI Link 1106
BibRef

Silva, S.[Samuel], Bettencourt, N.[Nuno], Leite, D.[Daniel], Rocha, J.[Joăo], Carvalho, M.[Mónica], Madeira, J.[Joaquim], Santos, B.S.[Beatriz Sousa],
Myocardial Perfusion Analysis from Adenosine-Induced Stress MDCT,
IbPRIA11(717-725).
Springer DOI Link 1106
BibRef

Gatta, C.[Carlo], Balocco, S.[Simone], Martin-Yuste, V.[Victoria], Leta, R.[Ruben], Radeva, P.[Petia],
Non-rigid Multi-modal Registration of Coronary Arteries Using SIFTflow,
IbPRIA11(159-166).
Springer DOI Link 1106
BibRef

Qian, Z.[Zhen], Joshi, P.[Parag], Rinehart, S.[Sarah], Voros, S.[Szilard],
An Automated Segmentation and Classification Framework for CT-Based Myocardial Perfusion Imaging for Detecting Myocardial Perfusion Defect,
FIMH11(206-214).
Springer DOI Link 1105
BibRef

Dutta, S.[Sara], Bishop, M.J.[Martin J.], Pathmanathan, P.[Pras], Lee, P.[Peter], Kohl, P.[Peter], Quinn, T.A.[T. Alexander], Rodriguez, B.[Blanca],
Interpreting Optical Mapping Recordings in the Ischemic Heart: A Combined Experimental and Computational Investigation,
FIMH11(20-27).
Springer DOI Link 1105
BibRef

Karim, R.[Rashed], Gao, G.[Gang], Harrison, J.[James], Arujuna, A.[Aruna], Lambert, H.[Hendrik], Leo, G.[Giovanni], Gill, J.[Jaswinder], Razavi, R.[Reza], Schaeffter, T.[Tobias], O'Neill, M.[Mark], Rhode, K.S.[Kawal S.],
Mapping Contact Force during Catheter Ablation for the Treatment of Atrial Fibrillation: New Insights into Ablation Therapy,
FIMH11(302-303).
Springer DOI Link 1105
BibRef

Flehmann, E.[Eugen], ur Rahman, S.[Sami], Wesarg, S.[Stefan], Voelker, W.[Wolfram],
Towards Patient Specific Catheter Selection: Computation of Aortic Geometry Based on Fused MRI Data,
FIMH11(145-152).
Springer DOI Link 1105
BibRef

Zuluaga, M.A.[Maria A.], Delgado Leyton, E.J.F.[Edgar J. F.], Hoyos, M.H.[Marcela Hernández], Orkisz, M.[Maciej],
Can the Coronary Artery Centerline Extraction in Computed Tomography Images Be Improved by Use of a Partial Volume Model?,
ICCVG10(II: 385-392).
Springer DOI Link 1009
BibRef

Beare, R.[Richard], Chong, W.[Winston], Ren, M.[Mandy], Das, G.[Gita], Srikanth, V.[Velandai], Phan, T.[Thanh],
Segmentation of Carotid Arteries in CTA Images,
DICTA10(69-74).
IEEE DOI Link 1012
BibRef

Bastida-Jumilla, M.C., Morales-Sanchez, J., Verdu-Monedero, R., Larrey-Ruiz, J., Sancho-Gomez, J.L.,
Detection of the intima and media walls of the carotid artery with geodesic active contours,
ICIP10(2213-2216).
IEEE DOI Link 1009
BibRef

Azar, J.C.[Jimmy C.], Muhammed, H.H.[Hamed Hamid],
Automated Tracking of the Carotid Artery in Ultrasound Image Sequences Using a Self Organizing Neural Network,
ICPR10(2544-2547).
IEEE DOI Link 1008
BibRef

Lu, L.[Le], Bi, J.[Jinbo], Yu, S.P.[Shi-Peng], Peng, Z.G.[Zhi-Gang], Krishnan, A.[Arun], Zhou, X.S.[Xiang Sean],
Hierarchical learning for tubular structure parsing in medical imaging: A study on coronary arteries using 3D CT Angiography,
ICCV09(2021-2028).
IEEE DOI Link 0909
BibRef

Kukar, M.[Matjaž], Šajn, L.[Luka],
Supporting Diagnostics of Coronary Artery Disease with Multi-resolution Image Parameterization and Data Mining,
MIRAGE09(356-367).
Springer DOI Link 0905
BibRef

Bismuth, V.[Vincent], Vaillant, R.[Regis],
A device enhancing and denoising algorithm for X-ray cardiac fluoroscopy,
ICPR08(1-4).
IEEE DOI Link 0812
BibRef
And:
Elastic registration for stent enhancement in X-ray image sequences,
ICIP08(2400-2403).
IEEE DOI Link 0810
BibRef

Luengo-Oroz, M.A., Ledesma-Carbayo, M.J., Gómez-Diego, J.J., García-Fernández, M.A., Desco, M., Santos, A.,
Extraction of the Coronary Artery Tree in Cardiac Computer Tomographic Images Using Morphological Operators,
FIMH07(424-432).
Springer DOI Link 0706
BibRef

Nwogu, I.[Ifeoma], Lorigo, L.M.[Liana M.],
Fast Temporal Tracking and 3D Reconstruction of a Single Coronary Vessel,
ICIP07(V: 537-540).
IEEE DOI Link 0709
BibRef

Fallavollita, P.[Pascal], Cheriet, F.[Farida],
Robust Coronary Artery Tracking from Fluoroscopic Image Sequences,
ICIAR07(889-898).
Springer DOI Link 0708
BibRef

Köse, C.[Cemal],
Fully Automatic Segmentation of Coronary Vessel Structures in Poor Quality X-Ray Angiogram Images,
SSPR06(74-82).
Springer DOI Link 0608
BibRef

de Bruijne, M.[Marleen],
Shape Particle Guided Tissue Classification,
MMBIA06(64).
IEEE DOI Link 0609
BibRef

de Bruijne, M.[Marleen],
A Pattern Classification Approach to Aorta Calcium Scoring in Radiographs,
CVBIA05(170-177).
Springer DOI Link 0601
BibRef

Zhang, Q.L.[Qi-Long], Pless, R.[Robert],
Segmenting Cardiopulmonary Images Using Manifold Learning with Level Sets,
CVBIA05(479-488).
Springer DOI Link 0601
BibRef

Hadar, E., Hahiashvili, Z., Aravot, D.,
The H2 Length Estimation Method: An Algorithm for Digitized Curves for Asymmetric 3D Grid Applied on Coronary Bypass Surgery,
ICIP05(I: 1121-1124).
IEEE DOI Link 0512
BibRef

Bouattour, S., Arndt, R., Paulus, D.,
4D Reconstruction of Coronary Arteries from Monoplane Angiograms,
CAIP05(724).
Springer DOI Link 0509
BibRef

Isgum, I., van Ginneken, B., Prokop, M.,
A pattern recognition approach to automated coronary calcium scoring,
ICPR04(III: 746-749).
IEEE DOI Link 0409
BibRef

Bellemare, C., Meunier, J.,
Structural method for tracking coronary arteries in coronary cineangiograms,
CRV04(378-384).
IEEE Abstract. 0408
BibRef

Cheng, D.C.[Da-Chuan], Schmidt-Trucksass, A., Cheng, K.S.[Kuo-Sheng], Sandrock, M., Pu, Q.[Qin], Burkhardt, H.,
Automatic detection of the intimal and the adventitial layers of the common carotid artery wall in ultrasound B-mode images using snakes,
CIAP99(452-457).
IEEE DOI Link 9909
BibRef

Ukai, Y., Niki, N., Satoh, H., Watanabe, S., Ohmatsu, H., Eguchi, K., Moriyama, N.,
An Algorithm for Coronary Calcification Diagnosis Based on Helical CT Images,
ICPR96(III: 543-547).
IEEE DOI Link 9608
(Univ. of Tokushima, J) BibRef

Zhang, X.M.[Xiang-Min], Collins, S.M., Sonka, M.,
Tree pruning strategy in automated detection of coronary trees in cineangiograms,
ICIP95(III: 656-659).
IEEE DOI Link 9510
BibRef

Suetens, P., Smets, C., van de Werf, F., Oosterlinck, A.,
Recognition of the coronary blood vessels on angiograms using hierarchical model-based iconic search,
CVPR89(576-581).
IEEE Abstract. 0403
BibRef

Wang, R., Sklansky, J.,
Multiresolution method for reconstructing the cross sections of coronary arteries from biplane angiograms,
ICPR92(III:667-670).
IEEE DOI Link 9208
BibRef

Harpaz, N., Shani, U., Dinar, U.,
Towards the automatic reconstruction of a 3-D animated model for the coronary tree from biplane angiograms,
ICPR88(II: 1012-1014).
IEEE DOI Link 8811
BibRef

Kitamura, K., Tobis, J.M., Sklansky, J.,
Biplane analysis of atheromatous coronary arteries,
ICPR88(II: 1277-1281).
IEEE DOI Link 8811
BibRef

Chapter on Medical Applications, CAT, MRI, Ultrasound, Heart Models, Brain Models continues in
Blood Flow Analysis .


Last update:Feb 8, 2012 at 11:25:05