| G. E. Christensen, S. C. Joshi, and M. I. Miller. Volumetric transformations of brain anatomy. IEEE Trans. Medical Imaging, 16, no. 6:864--877, 1997. |
....well posed [30] Thus, one has to restrict the set of possible solution velocities and instead work with the apparent velocity [15] which arises from locally constant translations in space. As an alternative one might ask for regularizations in terms of elastic stresses or viscous fluid effects [35,20,10, 9,11,14,17], which is computationally expensive and mostly pays off in cases of large deformations in between frames of the sequence, which we rule out in our applications considered here. The image processing models discussed above do not immediately apply to image sequence processing. Since there is no ....
G. E. Christensen, S. C. Joshi, and M. I. Miller. Volumetric transformations of brain anatomy. IEEE Trans. Medical Imaging, 16(6):864--877, 1997.
....introduced by Brechbuhler[2] Kotche#[16] and [8] A fourth method is based on manually initialized subdivision surfaces similar to Wang[24] These methods are presented in more detail in sections 2.1 2.4. Similar approaches have also been proposed e.g. Hill[11] and Meier [18] Christensen[4], Szeliski[22] and Rueckert [20] describe conceptionally di#erent methods for warping the space in which the shapes are embedded. Models can then be built from the resulting deformation field [13, 9, 20] Brett[3] Rangarajan[19] and Tagare[23] proposed shape features (e.g. regions of high ....
Christensen, G., Joshi,S., Miller, M.: Volumetric Transformation of Brain Anatomy. IEEE Trans. Med. Imag., 16 6 (1997) 864--877
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G. E. Christensen, S. C. Joshi, and M. I. Miller, "Volumetric transformation of brain anatomy," IEEE Trans. Med. Imag., vol. 16, pp. 864--877, Dec. 1997.
....consistency, the forward transformation would define one correspondence between the images while the reverse transformation would define a different correspondence. The consistent registration methods presented in this paper builds on the unidirectional landmark and intensity methods described in [30] which used a Fourier series basis to parameterize the transformation and the method developed by Kybic [31] that used B splines. In this paper, the idea of consistent image registration [32] 34] 38] is combined with the UL TPS algorithm [1] 4] 23] to overcome the problem that the forward ....
G. E. Christensen, S. C. Joshi, and M. I. Miller, "Volumetric transformation of brain anatomy," IEEE Trans. Med. Imag., vol. 16, pp. 864--877, Dec. 1997.
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G. E. Christensen, S. C. Joshi, and M. I. Miller. Volumetric transformations of brain anatomy. IEEE Trans. Medical Imaging, 16, no. 6:864--877, 1997.
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G. E. Christensen, S. C. Joshi, and M. I. Miller. Volumetric transformations of brain anatomy. IEEE Trans. Medical Imaging, 16, no. 6:864--877, 1997.
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G. E. Christensen, S. C. Joshi, and M. I. Miller. Volumetric transformations of brain anatomy. IEEE Trans. Medical Imaging, 16, no. 6:864--877, 1997.
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G. E. Christensen, S. C. Joshi, and M. I. Miller. Volumetric transformations of brain anatomy. IEEE Trans. Medical Imaging, 16, no. 6:864--877, 1997.
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G. E. Christensen, S. C. Joshi, and M. I. Miller. Volumetric transformations of brain anatomy. IEEE Trans. Medical Imaging, 16, no. 6:864-877, 1997.
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G. E. Christensen, S. Joshi, and M. Miller, "Volumetric transformation of brain anatomy," IEEE Trans. Med. Imag., vol. 16, pp. 864--877, Dec. 1997.
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G. E. Christensen, S. Joshi, and M. Miller, "Volumetric transformation of brain anatomy," IEEE Trans. Med. Imag., vol. 16, pp. 864--877, Dec. 1997.
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G. E. Christensen, S. Joshi, and M. Miller, "Volumetric transformation of brain anatomy," IEEE Trans. Med. Imag., vol. 16, pp. 864--877, Dec. 1997.
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Christensen, G. E. (1997). Volumetric transformation of brain anatomy. IEEE Transaction of Medical Imaging, 16(6):864--877. PMID: 9533586. 9
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Christensen, G. E., Joshi, S. C., and Miller, M: Volumetric transformation of brain anatomy. IEEE Trans. Medical Image 16 (1997), 864--877
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G. E. Christensen, S. C. Joshi, and M. I. Miller. Volumetric Transformation of Brain Anatomy. IEEE Transactions on Medical Imaging, 16(6):864--877, Dec. 1997.
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G. E. Christensen, S. C. Joshi, and M. I. Miller. Volumetric Transformation of Brain Anatomy. IEEE Trans. on Medical Imaging, 16(6):864--877, December 1997.
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G.E. Christensen, S.C. Joshi, and M.I. Miller, "Volumetric transformation of brain anatomy," IEEE Transactions on Medical Imaging, vol. 16, no. 6, pp. 864--877, December 1997.
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G. E. Christensen, S. C. Joshi, and M. Miller, "Volumetric transformation of brain anatomy," IEEE Trans. Medical Image 16, pp. 864--877, 1997.
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G. E. Christensen, S. C. Joshi, and M. I. Miller. Volumetric transformations of brain anatomy. IEEE Trans. Medical Imaging, 16, no. 6:864--877, 1997.
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G. E. Christensen, S. Joshi, and M. Miller, "Volumetric transformation of brain anatomy," IEEE Trans. Med. Imag., vol. 16, pp. 864--877, Dec. 1997.
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G. E. Christensen, S. C. Joshi, and M. Miller. Volumetric transformation of brain anatomy. IEEE Trans. Medical Image, 16:864--877, 1997.
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G. E. Christensen, S. C. Joshi, and M. I. Miller, Volumetric transformations of brain anatomy, IEEE Trans. Medical Imaging, 16, no. 6 (1997), pp. 864--877.
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G. E. Christensen, S. C. Joshi, and M. I. Miller, "Volumetric transformations of brain anatomy," IEEE Trans. Medical Imaging, vol. 16, no. 6, pp. 864--877, 1997.
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G. E. Christensen, S. C. Joshi, and M. I. Miller. Volumetric transformations of brain anatomy. IEEE Trans. Medical Imaging, 16, no. 6:864-877, 1997.
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G. E. Christensen, S. C. Joshi, and M. I. Miller. Volumetric transformations of brain anatomy. IEEE Trans. Medical Imaging, 16(6):864--877, 1997.
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