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2016 | OriginalPaper | Buchkapitel

Riemannian Metric Optimization for Connectivity-Driven Surface Mapping

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Abstract

With the advance of human connectome research, there are great interests in computing diffeomorphic maps of brain surfaces with rich connectivity features. In this paper, we propose a novel framework for connectivity-driven surface mapping based on Riemannian metric optimization on surfaces (RMOS) in the Laplace-Beltrami (LB) embedding space. The mathematical foundation of our method is that we can use the pullback metric to define an isometry between surfaces for an arbitrary diffeomorphism, which in turn results in identical LB embeddings from the two surfaces. For connectivity-driven surface mapping, our goal is to compute a diffeomorphism that can match a set of connectivity features defined over anatomical surfaces. The proposed RMOS approach achieves this goal by iteratively optimizing the Riemannian metric on surfaces to match the connectivity features in the LB embedding space. At the core of our framework is an optimization approach that converts the cost function of connectivity features into a distance measure in the LB embedding space, and optimizes it using gradients of the LB eigen-system with respect to the Riemannian metric. We demonstrate our method on the mapping of thalamic surfaces according to connectivity to ten cortical regions, which we compute with the multi-shell diffusion imaging data from the Human Connectome Project (HCP). Comparisons with a state-of-the-art method show that the RMOS method can more effectively match anatomical features and detect thalamic atrophy due to normal aging.

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Literatur
1.
Zurück zum Zitat Fischl, B., Sereno, M.I., Dale, A.M.: Cortical surface-based analysis II: inflation, flattening, and a surface-based coordinate system. NeuroImage 9(2), 195–207 (1999)CrossRef Fischl, B., Sereno, M.I., Dale, A.M.: Cortical surface-based analysis II: inflation, flattening, and a surface-based coordinate system. NeuroImage 9(2), 195–207 (1999)CrossRef
2.
Zurück zum Zitat Thompson, P.M., Hayashi, K.M., de Zubicaray, G.I., Janke, A.L., Rose, S.E., Semple, J., Hong, M.S., Herman, D.H., Gravano, D., Doddrell, D.M., Toga, A.W.: Mapping hippocampal and ventricular change in Alzheimer disease. NeuroImage 22(4), 1754–1766 (2004)CrossRef Thompson, P.M., Hayashi, K.M., de Zubicaray, G.I., Janke, A.L., Rose, S.E., Semple, J., Hong, M.S., Herman, D.H., Gravano, D., Doddrell, D.M., Toga, A.W.: Mapping hippocampal and ventricular change in Alzheimer disease. NeuroImage 22(4), 1754–1766 (2004)CrossRef
3.
Zurück zum Zitat Essen, D.C.V., Smith, S.M., Barch, D.M., Behrens, T.E., Yacoub, E., Ugurbil, K.: The WU-Minn human connectome project: an overview. NeuroImage 80, 62–79 (2013)CrossRef Essen, D.C.V., Smith, S.M., Barch, D.M., Behrens, T.E., Yacoub, E., Ugurbil, K.: The WU-Minn human connectome project: an overview. NeuroImage 80, 62–79 (2013)CrossRef
4.
Zurück zum Zitat Gutman, B., Leonardo, C., Jahanshad, N., Hibar, D., Eschenburg, K., Nir, T., Villalon, J., Thompson, P.: Registering cortical surfaces based on whole-brain structural connectivity and continuous connectivity analysis. In: Golland, P., Hata, N., Barillot, C., Hornegger, J., Howe, R. (eds.) MICCAI 2014. LNCS, vol. 8675, pp. 161–168. Springer, Heidelberg (2014). doi:10.1007/978-3-319-10443-0_21 Gutman, B., Leonardo, C., Jahanshad, N., Hibar, D., Eschenburg, K., Nir, T., Villalon, J., Thompson, P.: Registering cortical surfaces based on whole-brain structural connectivity and continuous connectivity analysis. In: Golland, P., Hata, N., Barillot, C., Hornegger, J., Howe, R. (eds.) MICCAI 2014. LNCS, vol. 8675, pp. 161–168. Springer, Heidelberg (2014). doi:10.​1007/​978-3-319-10443-0_​21
5.
Zurück zum Zitat Jiang, X., Zhang, T., Zhu, D., Li, K., Chen, H., Lv, J., Hu, X., Han, J., Shen, D., Guo, L., Liu, T.: Anatomy-guided dense individualized and common connectivity-based cortical landmarks (A-DICCCOL). IEEE Trans. Biomed. Eng. 62(4), 1108–1119 (2015)CrossRef Jiang, X., Zhang, T., Zhu, D., Li, K., Chen, H., Lv, J., Hu, X., Han, J., Shen, D., Guo, L., Liu, T.: Anatomy-guided dense individualized and common connectivity-based cortical landmarks (A-DICCCOL). IEEE Trans. Biomed. Eng. 62(4), 1108–1119 (2015)CrossRef
6.
Zurück zum Zitat Reuter, M., Wolter, F., Peinecke, N.: Laplace-Beltrami spectra as Shape-DNA of surfaces and solids. Comput. Aided Des. 38, 342–366 (2006)CrossRef Reuter, M., Wolter, F., Peinecke, N.: Laplace-Beltrami spectra as Shape-DNA of surfaces and solids. Comput. Aided Des. 38, 342–366 (2006)CrossRef
7.
Zurück zum Zitat Rustamov, R.M.: Laplace-beltrami eigenfunctions for deformation invariant shape representation. In: Proceeding of Eurographics Symposium on Geometry Processing, pp. 225–233 (2007) Rustamov, R.M.: Laplace-beltrami eigenfunctions for deformation invariant shape representation. In: Proceeding of Eurographics Symposium on Geometry Processing, pp. 225–233 (2007)
8.
Zurück zum Zitat Lombaert, H., Sporring, J., Siddiqi, K.: Diffeomorphic spectral matching of cortical surfaces. In: Gee, J.C., Joshi, S., Pohl, K.M., Wells, W.M., Zöllei, L. (eds.) IPMI 2013. LNCS, vol. 7917, pp. 376–389. Springer, Heidelberg (2013). doi:10.1007/978-3-642-38868-2_32 CrossRef Lombaert, H., Sporring, J., Siddiqi, K.: Diffeomorphic spectral matching of cortical surfaces. In: Gee, J.C., Joshi, S., Pohl, K.M., Wells, W.M., Zöllei, L. (eds.) IPMI 2013. LNCS, vol. 7917, pp. 376–389. Springer, Heidelberg (2013). doi:10.​1007/​978-3-642-38868-2_​32 CrossRef
9.
Zurück zum Zitat Shi, Y., Lai, R., Wang, D., Pelletier, D., Mohr, D., Sicotte, N., Toga, A.: Metric optimization for surface analysis in the Laplace-beltrami embedding space. IEEE Trans. Med. Imag. 33(7), 1447–1463 (2014)CrossRef Shi, Y., Lai, R., Wang, D., Pelletier, D., Mohr, D., Sicotte, N., Toga, A.: Metric optimization for surface analysis in the Laplace-beltrami embedding space. IEEE Trans. Med. Imag. 33(7), 1447–1463 (2014)CrossRef
10.
Zurück zum Zitat Zeng, W., Guo, R., Luo, F., Gu, X.: Discrete heat kernel determines discrete Riemannian metric. Graph. Models 74(4), 121–129 (2012)CrossRef Zeng, W., Guo, R., Luo, F., Gu, X.: Discrete heat kernel determines discrete Riemannian metric. Graph. Models 74(4), 121–129 (2012)CrossRef
11.
Zurück zum Zitat Behrens, T.E., Johansen-Berg, H., Woolrich, M.W., Smith, S.M., Wheeler-Kingshott, C.A., Boulby, P.A., Barker, G.J., Sillery, E.L., Sheehan, K., Ciccarelli, O., Thompson, A.J., Brady, J.M., Matthews, P.M.: Non-invasive mapping of connections between human thalamus and cortex using diffusion imaging. Nat. Neurosci. 7(6), 750–757 (2003)CrossRef Behrens, T.E., Johansen-Berg, H., Woolrich, M.W., Smith, S.M., Wheeler-Kingshott, C.A., Boulby, P.A., Barker, G.J., Sillery, E.L., Sheehan, K., Ciccarelli, O., Thompson, A.J., Brady, J.M., Matthews, P.M.: Non-invasive mapping of connections between human thalamus and cortex using diffusion imaging. Nat. Neurosci. 7(6), 750–757 (2003)CrossRef
12.
Zurück zum Zitat Rosen, J.B.: The gradient projection method for nonlinear programming. part I. Linear constraints. J. Soc. Ind. Appl. Math. 8(1), 181–217 (1960)CrossRefMATH Rosen, J.B.: The gradient projection method for nonlinear programming. part I. Linear constraints. J. Soc. Ind. Appl. Math. 8(1), 181–217 (1960)CrossRefMATH
13.
Zurück zum Zitat Tran, G., Shi, Y.: Fiber orientation and compartment parameter estimation from multi-shell diffusion imaging. IEEE Trans. Med. Imaging 34(11), 2320–2332 (2015)CrossRef Tran, G., Shi, Y.: Fiber orientation and compartment parameter estimation from multi-shell diffusion imaging. IEEE Trans. Med. Imaging 34(11), 2320–2332 (2015)CrossRef
Metadaten
Titel
Riemannian Metric Optimization for Connectivity-Driven Surface Mapping
verfasst von
Jin Kyu Gahm
Yonggang Shi
Copyright-Jahr
2016
DOI
https://doi.org/10.1007/978-3-319-46720-7_27

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