Image Processing Reference
In-Depth Information
190.
Papademetris, X., Sinusas, A., Dione, D., Constable, R., and Duncan, J. (2002).
Estimation of 3-D left ventricular deformation from medical images using bio-
mechanical models. IEEE Trans. Med. Imaging . 21(7): 786-800.
191.
Papademetris, X., Sinusas, A., Dione, D., and Duncan, J. (2001). Estimation of
3-D left ventricular deformation from echocardiography. Med. Image Anal . 5(1):
17-28.
192.
Shi, P., and Liu, H. (2003). Stochastic finite element framework for simultaneous
estimation of cardiac kinematic functions and material parameters. Med. Image.
Anal . 7(4): 445-464.
193.
Lötjönen, J., Kivistö, S., Koikkalainen, J., Smutek, D., and Lauerma, K. (2004).
Statistical shape model of atria, ventricles and epicardium from short- and long-
axis MR images. Med. Image Anal . 8(3) 371-386.
194.
Pentland, A. and Sclaroff, S. (1991). Closed-form solutions for physically based
shape modeling and recognition. IEEE Trans. Pattern Anal. Machine Intell . 13(7):
703-714.
195.
Metaxas, D. and Terzopoulos, D. (1993). Shape and nonrigid motion estimation
through physics-based synthesis. IEEE Trans. Pattern Anal. Machine Intell . 15(6):
580-591.
196.
Barr, A. (1981). Superquadrics and angle-preserving deformations. IEEE Comput.
Graph. and Appl . 1(1): 11-23.
197.
Chen, C., Luo, J., and Parker, K. (1998). Image segmentation via adaptive K-
mean clustering and knowledge-based morphological operations with biomedical
applications. IEEE Trans. Image Process . 7(12): 1673-1683.
198.
Hopfield, J. (1984). Neurons with graded responses have collective computational
properties like those of two-state neurons. Proc. Nat. Acad. Sci . 81: 3088-3092.
199.
Monga, O., Deriche, R., and Rocchisani, J.M. (1991). 3-D edge detection using
recursive filtering: application to scanner images. Comput. Vis. Graph and Image
Process: Image Underst . 53(1): 76-87.
200.
Declerck, J., Feldmar, J., Goris, M., and Betting, F. (1997). Automatic registration
and alignment on a template of cardiac stress and rest SPECT images. IEEE Trans.
Med. Imaging, 16(6):727-37.
201.
Besl, P. and McKay, N. (1992). A method for registration of 3-D shapes. IEEE
Trans. Pattern Anal. Machine Intell . 14(2): 239-255.
202.
Feldmar, J., and Ayache, N. (1996). Rigid, affine and locally affine registration of
free-form surfaces. Intl. J. Comput. Vision . 18(2): 99-119.
203.
Sederberg, T.W. and Parry, S.R. (1986). Free-form deformation of solid geometric
models. in SIGGRAPH'86, Vol. 20, 151-160. Dallas, USA: ACM.
204.
Germano, G. and Berman, D. (1999). Clinical Gated Cardiac SPECT, chap.
Quantitative gated perfusion SPECT, 115-146. Armonk, NY: Futura Publishing
Co.
205.
Goshtasby, A. (1993). Design and recovery of 2-D and 3-D shapes using rational
Gaussian curves and surfaces. Intl. J. Comput. Vision . 10(3): 233-256.
206.
Metaxas, D.N. (1996). Physics-based deformable models: applications to com-
puter vision, graphics and medical imaging. Cambridge: Kluwer Academic Pub-
lisher.
207.
Cohen, L. (1991). On active contour models and balloons. Comput. Vis. Graph.
and Image Process: Image Underst . 53(2): 211-218.
208.
Delingette, H. (1999). General object reconstruction based on simplex meshes.
Intl. J. Comput. Vision . 32(2): 111-146.
Search WWH ::




Custom Search