Biomedical Engineering Reference
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[21] Mortensen, E. N. and Barrett, W. A., Interactive segmentation with intel-
ligent scissors, Graphical Models and Image Processing, Vol. 60, No. 5,
pp. 349-384, 1998.
[22] Mortensen, E. N., Morse, B. S., Barrett, W. A., and Udupa, J. K., Adaptive
boundary detection using live-wire two-dimensional dynamic program-
ming, In: IEEE Proc. Computer in Cardiology, pp. 635-638, 1992.
[23] Olabarriaga, S. D. and Smeulders, A. W. M., Interaction in the seg-
mentation of medical images: A survey, Medical Image Analyis, Vol. 5,
pp. 127-142, 2001.
[24] Pizer, S. M., Cullip, T. J., and Fredericksen, R. E., Toward interactive
object definition in 3D scalar images. In: 3D Imaging in Medicine, K. H.
H ohne et al. , eds., Springer, Berlin: pp. 83-105, 1990.
[25] Staib, L. H. and Duncan, J. D., Model-based deformable surface find-
ing for medical images, IEEE Trans. Medical Imaging, Vol. 15, No. 5,
pp. 720-731, 1996.
[26] Udupa, J. K., Samarasekera, S., and Berrett, W. A., Boundary detection
via dynamic programming, Proc. SPIE, Vol. 1808, pp. 33-39, 1992.
[27] Welte, D., Grunert, T., Klose, U., Petersen, D., and Becker, E., Interactive
3D segmentation and visualization of vessels, Proceedings of Computer
Assisted Radiology, pp. 329-335, 1996.
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