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2016 | OriginalPaper | Buchkapitel

Dynamic Volume Reconstruction from Multi-slice Abdominal MRI Using Manifold Alignment

verfasst von : Xin Chen, Muhammad Usman, Daniel R. Balfour, Paul K. Marsden, Andrew J. Reader, Claudia Prieto, Andrew P. King

Erschienen in: Medical Image Computing and Computer-Assisted Intervention - MICCAI 2016

Verlag: Springer International Publishing

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Abstract

We present a novel framework for retrospective dynamic 3D volume reconstruction from a multi-slice MRI acquisition using manifold alignment. K-space data are continuously acquired under free breathing using a radial golden-angle trajectory in a slice-by-slice manner. Non-overlapping consecutive profiles that were acquired within a short time window are grouped together. All grouped profiles from all slices are then simultaneously embedded using manifold alignment into a common manifold space (MS), in which profiles that were acquired at similar respiratory states are close together. Subsequently, a 3D volume can be reconstructed at each of the grouped profile MS positions by combining profiles that are close in the MS. This enables the original multi-slice dataset to be used to reconstruct a dynamic 3D sequence based on the respiratory state correspondences established in the MS. Our method was evaluated on both synthetic and in vivo datasets. For the synthetic datasets, the reconstructed dynamic sequence achieved a normalised cross correlation of 0.98 and peak signal to noise ratio of 26.64 dB compared with the ground truth. For the in vivo datasets, based on sharpness measurements and visual comparison, our method performed better than reconstruction using an adapted central k-space gating method.

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Literatur
1.
Zurück zum Zitat Lustig, M., Donoho, D., Pauly, J.: Sparse MRI: the application of compressed sensing for rapid MR imaging. Mag. Res. Med. 58(6), 1182–1195 (2007)CrossRef Lustig, M., Donoho, D., Pauly, J.: Sparse MRI: the application of compressed sensing for rapid MR imaging. Mag. Res. Med. 58(6), 1182–1195 (2007)CrossRef
2.
Zurück zum Zitat Larson, A., White, R., Laub, G., McVeigh, E., Li, D., Simonetti, O.: Self-gated cardiac cine MRI. Mag. Res. Img. 51(1), 93–102 (2004) Larson, A., White, R., Laub, G., McVeigh, E., Li, D., Simonetti, O.: Self-gated cardiac cine MRI. Mag. Res. Img. 51(1), 93–102 (2004)
3.
Zurück zum Zitat Baumgartner, C.F., Gomez, A., Koch, L.M., Housden, J.R., Kolbitsch, C., McClelland, J.R., Rueckert, D., King, A.P.: Self-aligning manifolds for matching disparate medical image datasets. In: Ourselin, S., Alexander, D.C., Westin, C.-F., Cardoso, M. (eds.) IPMI 2015. LNCS, vol. 9123, pp. 363–374. Springer, Heidelberg (2015)CrossRef Baumgartner, C.F., Gomez, A., Koch, L.M., Housden, J.R., Kolbitsch, C., McClelland, J.R., Rueckert, D., King, A.P.: Self-aligning manifolds for matching disparate medical image datasets. In: Ourselin, S., Alexander, D.C., Westin, C.-F., Cardoso, M. (eds.) IPMI 2015. LNCS, vol. 9123, pp. 363–374. Springer, Heidelberg (2015)CrossRef
4.
Zurück zum Zitat Baumgartner, C., Kolbitsch, C., Balfour, D., Marsden, P., McClelland, J., Rueckert, D., King, A.: High-resolution dynamic MR imaging of the thorax for respiratory motion correction of PET using groupwise manifold alignment. Med. Img. Anal. 18, 939–952 (2014)CrossRef Baumgartner, C., Kolbitsch, C., Balfour, D., Marsden, P., McClelland, J., Rueckert, D., King, A.: High-resolution dynamic MR imaging of the thorax for respiratory motion correction of PET using groupwise manifold alignment. Med. Img. Anal. 18, 939–952 (2014)CrossRef
5.
Zurück zum Zitat Bhatia, K.K., Caballero, J., Price, A.N., Sun, Y., Hajnal, J.V., Rueckert, D.: Fast reconstruction of accelerated dynamic MRI using manifold kernel regression. In: Navab, N., Hornegger, J., Wells, W.M., Frangi, A.F. (eds.) MICCAI 2015, Part III. LNCS, vol. 9351, pp. 510–518. Springer, Heidelberg (2015). doi:10.1007/978-3-319-24574-4_61CrossRef Bhatia, K.K., Caballero, J., Price, A.N., Sun, Y., Hajnal, J.V., Rueckert, D.: Fast reconstruction of accelerated dynamic MRI using manifold kernel regression. In: Navab, N., Hornegger, J., Wells, W.M., Frangi, A.F. (eds.) MICCAI 2015, Part III. LNCS, vol. 9351, pp. 510–518. Springer, Heidelberg (2015). doi:10.​1007/​978-3-319-24574-4_​61CrossRef
6.
Zurück zum Zitat Usman, M., Atkinson, D., Kolbitsch, C., Schaeffter, T., Prieto, C.: Manifold learning based ECG-Free free-breathing cardiac CINE MRI. Mag. Res. Img. 41, 1521–1527 (2015)CrossRef Usman, M., Atkinson, D., Kolbitsch, C., Schaeffter, T., Prieto, C.: Manifold learning based ECG-Free free-breathing cardiac CINE MRI. Mag. Res. Img. 41, 1521–1527 (2015)CrossRef
7.
Zurück zum Zitat Usman, M., Vaillant, G., Atkinson, D., Schaeffter, T., Prieto, C.: Compressive manifold learning: estimating one-dimensional respiratory motion directly from undersampled k-space data. Mag. Res. Med. 72, 1130–1140 (2014)CrossRef Usman, M., Vaillant, G., Atkinson, D., Schaeffter, T., Prieto, C.: Compressive manifold learning: estimating one-dimensional respiratory motion directly from undersampled k-space data. Mag. Res. Med. 72, 1130–1140 (2014)CrossRef
8.
Zurück zum Zitat Winkelmann, S., Schaeffter, T., Koehler, T., Eggers, H., Doessel, O.: An optimal radial profile order based on the golden ratio for time-resolved MRI. IEEE Trans. Med. Img. 26(1), 68–76 (2007)CrossRef Winkelmann, S., Schaeffter, T., Koehler, T., Eggers, H., Doessel, O.: An optimal radial profile order based on the golden ratio for time-resolved MRI. IEEE Trans. Med. Img. 26(1), 68–76 (2007)CrossRef
10.
Zurück zum Zitat Roweis, S., Saul, L.: Nonlinear dimensionality reduction by locally linear embedding. Science 290, 2323–2326 (2000)CrossRef Roweis, S., Saul, L.: Nonlinear dimensionality reduction by locally linear embedding. Science 290, 2323–2326 (2000)CrossRef
11.
Zurück zum Zitat Rueckert, D., Sonoda, L., Hayes, C., Hill, D., Leach, M., Hawkes, D.: Nonrigid registration using free-form deformations: application to breast MR images. IEEE Trans. Med. Img. 18(8), 712–721 (1999)CrossRef Rueckert, D., Sonoda, L., Hayes, C., Hill, D., Leach, M., Hawkes, D.: Nonrigid registration using free-form deformations: application to breast MR images. IEEE Trans. Med. Img. 18(8), 712–721 (1999)CrossRef
Metadaten
Titel
Dynamic Volume Reconstruction from Multi-slice Abdominal MRI Using Manifold Alignment
verfasst von
Xin Chen
Muhammad Usman
Daniel R. Balfour
Paul K. Marsden
Andrew J. Reader
Claudia Prieto
Andrew P. King
Copyright-Jahr
2016
DOI
https://doi.org/10.1007/978-3-319-46726-9_57