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Segmentation of 3D Tubular Tree Structures in Medical Images ...

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BIBLIOGRAPHY 137<br />

[21] Choyke, P., Yim, P., Marcos, H., Ho, V., Mullick, R., and Summers, R. (2001).<br />

Hepatic MR angiography: a multiobserver comparison <strong>of</strong> visualization methods. Am.<br />

J. Roentgenolog., 176(2):465–570.<br />

[22] Chuang, C.-H. and Lie, W.-N. (2004). A downstream algorithm based on extended<br />

gradient vector flow field for object segmentation. IEEE Trans. Med. Imag.,<br />

13(10):1379–1392.<br />

[23] Chung, A., Noble, J., and Summers, P. (2004). Vascular segmentation <strong>of</strong> phase<br />

contrast magnetic resonance angiograms based on statistical mixture model<strong>in</strong>g and local<br />

phase coherence. IEEE Trans. Med. Imag<strong>in</strong>g, 23(12):1490–1507.<br />

[24] Cohen, L. D. and Deschamps, T. (2001). Group<strong>in</strong>g connected components us<strong>in</strong>g<br />

m<strong>in</strong>imal path techniques. In Comput Vision and Pattern Recognition 2001, pages 102–<br />

109.<br />

[25] Cormen, T. H., Leiserson, C., and Rivest, R. L. (1990). Introduction to Algorithms<br />

(MIT Electrical Eng<strong>in</strong>eer<strong>in</strong>g and Computer Science). The MIT Press.<br />

[26] de Bruijne, M., van G<strong>in</strong>neken, B., Niessen, W., Loog, M., and Viergever, M. (2003a).<br />

Model-based segmentation <strong>of</strong> abdom<strong>in</strong>al aortic aneurysms <strong>in</strong> CTA images. In Proc.<br />

SPIE Med. Imag<strong>in</strong>g, pages 1560–1571.<br />

[27] de Bruijne, M., van G<strong>in</strong>neken, B., Niessen, W., and Viergever, M. (2003b). Adapt<strong>in</strong>g<br />

active shape models for <strong>3D</strong> segmentation <strong>of</strong> tubular structures <strong>in</strong> medical images. In<br />

Proc. Inf. Process. Med. Imag<strong>in</strong>g, pages 136–147.<br />

[28] Del<strong>in</strong>gette, H. and Montagnat, J. (2001). Shape and topology constra<strong>in</strong>ts on parametric<br />

active contours. Comput. Vision Image Understan., 83(2):140–171.<br />

[29] Deschamps, T. and Cohen, L. (2002). Group<strong>in</strong>g connected components us<strong>in</strong>g m<strong>in</strong>imal<br />

path techniques. In Mathematics and Visualization, pages 102–109.<br />

[30] Dikici, E., OâDonnell, T., Grady, L., Setser, R., and White, R. D. (2008). Coronary<br />

artery centerl<strong>in</strong>e track<strong>in</strong>g us<strong>in</strong>g axial symmetries. The Midas Journal.<br />

[31] Dokládal, P., Lohou, C., Perroton, L., and Bertrand, G. (1999). Liver blood vessels<br />

extraction by a 3-D topological approach. In Proc. <strong>of</strong> MICCAI, pages 98–105, London,<br />

UK.

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