Image Processing Reference
In-Depth Information
74.
Meier, G., Bove, A., Santamore, W., and Lynch, P. (1980). Contractile function
in canine right ventricle. Am. J. Physiol . 239(6): H794-804.
75.
Arts, T., Hunter, W., Douglas, A., Muijtjens, A., Corsel, J., and Reneman, R.
(1993). Macroscopic three-dimensional motion patterns of the left ventricle. Adv.
Exp. Med. Biol. 346: 383-392.
76.
Villarreal, F.L., Waldman, L.K., and Lew, W.Y.W. (1988). Technique for measuring
regional two-dimensional finite strains in canine left ventricle. Circ. Res. 62(4):
711-721.
77.
Young, A. and Axel, L. (1992). Three-dimensional motion and deformation of the
heart wall: estimation with spatial modulation of magnetization — a model-based
approach. Radiology . 185(1): 241-247.
78.
Moore, C., O'Dell, W., McVeigh, E., and Zerhouni, E. (1992). Calculation of
three-dimensional left ventricular strains form biplanar tagged MR images. J.
Magn. Reson. Imaging . 2(2): 165-175.
79.
Kumar, S., and Goldgof, D. (1994). Automatic tracking of SPAMM grid and the
estimation of deformation parameters from cardiac MR images. IEEE Trans. Med.
Imaging . 13(1): 122-132.
80.
Fischer, S.E., McKinnon, G.C., Scheidegger, M. B., Prins, W., Meier, D., and Boesiger,
P. (1994). True myocardial motion tracking. Magn. Res. Med . 31(4): 401-413.
81.
Young, A., Kraitchman, D., Dougherty, L., and Axel, L. (1995). Tracking and
finite element analysis of stripe deformation in magnetic resonance tagging. IEEE
Trans. Med. Imaging . 14(3): 413-421.
82.
Denney, T. and Prince, J. (1995). Reconstruction of 3-D left ventricular motion
from planar tagged cardiac MR images: an estimation theoretic approach. IEEE
Trans. Med. Imaging . 14(4): 1-11.
83.
Kerwin, W. and Prince, J. (1998). Cardiac material markers from tagged MR
images. Med. Image. Anal . 2(4): 339-353.
84.
Prince, J. and McVeigh, E. (1992). Motion estimation from tagged MR image
sequences. IEEE Trans. Med. Imaging . 11(2): 238-249.
85.
Amartur, S. and Vesselle, H. (1993). A new approach to study cardiac motion: the
optical flow of cine MR images. Magn. Reson. Med . 29(1): 59-67.
86.
Tistarelli, M. and Marcennaro, G. (1994). Using optical flow to analyze the motion
of human body organs from bioimages. in Math. Meth. Biomed. Image. Anal .
100-9. Seattle, USA.
87.
Denney, T. and Prince J. (1994). Optimal brightness functions for optical
flow estimation of deformable motion. IEEE Trans. Image. Process . 3(2):
178-191.
88.
Denney, T. and Prince, J. (1995). A frequency domain performance analysis of
Horn and Schunck's optical flow algorithm for deformable motion. IEEE Trans.
Image. Process . 4(9): 1324-1327.
89.
Dougherty, L., Asmuth, J., Blom, A., Axel, L., and Kumar, R. (1999). Validation
of an optical flow method for tag displacement estimation. IEEE Trans. Med.
Imaging . 18(4): 359-363.
90.
Beauchemin, S. and Barron, J. (1995). The computation of optical flow. ACM
Comput. Surveys . 27(3): 444-467.
91.
Song, S. and Leahy, R. (1991). Computation of 3-D velocity fields from 3-
D cine CT images of a human heart. IEEE Trans. Med. Imaging . 10(3):
295-306.
Search WWH ::




Custom Search