用户名: 密码: 验证码:
From Medical Images to Fast Computational Models of Heart Electromechanics: An Integrated Framework towards Clinical Use
详细信息    查看全文
  • 作者:Oliver Zettinig (19) (20)
    Tommaso Mansi (19)
    Bogdan Georgescu (19)
    Saikiran Rapaka (19)
    Ali Kamen (19)
    Jan Haas (21)
    Karen S. Frese (21)
    Farbod Sedaghat-Hamedani (21)
    Elham Kayvanpour (21)
    Ali Amr (21)
    Stefan Hardt (21)
    Derliz Mereles (21)
    Henning Steen (21)
    Andreas Keller (22) (23)
    Hugo A. Katus (21)
    Benjamin Meder (21)
    Nassir Navab (20)
    Dorin Comaniciu (19)
  • 刊名:Lecture Notes in Computer Science
  • 出版年:2013
  • 出版时间:2013
  • 年:2013
  • 卷:7945
  • 期:1
  • 页码:259-267
  • 全文大小:1010KB
  • 参考文献:1. Arsigny, V., Fillard, P., Pennec, X., Ayache, N.: Log-Euclidean metrics for fast and simple calculus on diffusion tensors. MRM?56(2), 411-21 (2006) CrossRef
    2. Bayer, J., Blake, R., Plank, G., Trayanova, N.: A novel rule-based algorithm for assigning myocardial fiber orientation to computational heart models. ABME?40, 2243-254 (2012)
    3. Clayton, R., Bernus, O., Cherry, E., Dierckx, H., Fenton, F., Mirabella, L., Panfilov, A., Sachse, F., Seemann, G., Zhang, H.: Models of cardiac tissue electrophysiology: Progress, challenges and open questions. PBMB?104(1-3), 22 (2011)
    4. Holzapfel, G.A., Ogden, R.W.: Constitutive modelling of passive myocardium: a structurally based framework for material characterization. Phil. Trans. R. Soc. A?367(1902), 3445-475 (2009) CrossRef
    5. Kerckhoffs, R., Neal, M., Gu, Q., Bassingthwaighte, J., Omens, J., McCulloch, A.: Coupling of a 3D finite element model of cardiac ventricular mechanics to lumped systems models of the systemic and pulmonic circulation. ABME?35, 1-8 (2007)
    6. Mansi, T.: Image-Based Physiological and Statistical Models of the Heart, Application to Tetralogy of Fallot. Ph.D. thesis, Mines ParisTech (2010)
    7. Marchesseau, S., Heimann, T., Chatelin, S., Willinger, R., Delingette, H.: Fast porous visco-hyperelastic soft tissue model for surgery simulation: Application to liver surgery. PBMB?103, 185-96 (2010)
    8. McMurray, J., et al.: ESC guidelines for the diagnosis and treatment of acute and chronic heart failure 2012. European Heart Journal?33(14), 1787-847 (2012) CrossRef
    9. Miller, K., Joldes, G., Lance, D., Wittek, A.: Total lagrangian explicit dynamics finite element algorithm for computing soft tissue deformation. Communications in Numerical Methods in Engineering?23(2), 121-34 (2007) CrossRef
    10. Moireau, P.: Assimilation de données par filtrage pour les systèmes hyperboliques du second ordre-Applications à la mécanique cardiaque. Ph.D. thesis
    11. Mosegaard, J., Herborg, P., Sorensen, T.: A GPU accelerated spring mass system for surgical simulation. Studies Health Tech. & Inf.?111, 342-48 (2005)
    12. Promayon, E., Baconnier, P., Puech, C.: Physically-Based Deformations Constrained in Displacements and Volume. Computer Graphics Forum?15(3), 155-64 (1996) CrossRef
    13. Rapaka, S., Mansi, T., Georgescu, B., Pop, M., Wright, G.A., Kamen, A., Comaniciu, D.: LBM-EP: Lattice-boltzmann method for fast cardiac electrophysiology simulation from 3D images. In: Ayache, N., Delingette, H., Golland, P., Mori, K. (eds.) MICCAI 2012, Part II. LNCS, vol.?7511, pp. 33-0. Springer, Heidelberg (2012) CrossRef
    14. Sermesant, M., Delingette, H., Ayache, N.: An electromechanical model of the heart for image analysis and simulation. IEEE TMI?25(5), 612-25 (2006)
    15. Taylor, Z., Cheng, M., Ourselin, S.: High-speed nonlinear finite element analysis for surgical simulation using graphics processing units. IEEE Transactions on Medical Imaging?27(5), 650-63 (2008) CrossRef
    16. Zheng, Y., Barbu, A., Georgescu, B., Scheuering, M., Comaniciu, D.: Four-chamber heart modeling and automatic segmentation for 3 cardiac CT volumes using marginal space learning and steerable features. IEEE TMI?27, 1668-681 (2008)
  • 作者单位:Oliver Zettinig (19) (20)
    Tommaso Mansi (19)
    Bogdan Georgescu (19)
    Saikiran Rapaka (19)
    Ali Kamen (19)
    Jan Haas (21)
    Karen S. Frese (21)
    Farbod Sedaghat-Hamedani (21)
    Elham Kayvanpour (21)
    Ali Amr (21)
    Stefan Hardt (21)
    Derliz Mereles (21)
    Henning Steen (21)
    Andreas Keller (22) (23)
    Hugo A. Katus (21)
    Benjamin Meder (21)
    Nassir Navab (20)
    Dorin Comaniciu (19)

    19. Imaging and Computer Vision, Siemens Corporation, Corporate Technology, Princeton, NJ, USA
    20. Computer Aided Medical Procedures, Technische Universit?t München, Germany
    21. Department of Internal Medicine III - Cardiology, Angiology and Pneumology, University Hospital Heidelberg, Heidelberg, Germany
    22. Siemens AG, Healthcare Strategy, Erlangen, Germany
    23. Department of Human Genetics, Saarland University, Germany
  • ISSN:1611-3349
文摘
With the recent advances in computational power, realistic modeling of heart function within a clinical environment has come into reach. Yet, current modeling frameworks either lack overall completeness or computational performance, and their integration with clinical imaging and data is still tedious. In this paper, we propose an integrated framework to model heart electromechanics from clinical and imaging data, which is fast enough to be embedded in a clinical setting. More precisely, we introduce data-driven techniques for cardiac anatomy estimation and couple them with an efficient GPU (graphics processing unit) implementation of the orthotropic Holzapfel-Ogden model of myocardium tissue, a GPU implementation of a mono-domain electrophysiology model based on the Lattice-Boltzmann method, and a novel method to correctly capture motion during isovolumetric phases. Benchmark experiments conducted on patient data showed that the computation of a whole heart cycle including electrophysiology and biomechanics with mesh resolutions of around 70k elements takes on average 1min 10s on a standard desktop machine (Intel Xeon 2.4GHz, NVIDIA GeForce GTX 580). We were able to compute electrophysiology up to 40.5× faster and biomechanics up to 15.2× faster than with prior CPU-based approaches, which breaks ground towards model-based therapy planning.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700