Title: | Data registration and fusion for cardiac applications |
Author(s): | Mäkelä, Timo |
Date: | 2003-05-28 |
Language: | en |
Pages: | 39, [64] |
Department: | Department of Engineering Physics and Mathematics Teknillisen fysiikan ja matematiikan osasto |
ISBN: | 951-22-6515-X |
Subject: | Medical sciences |
Keywords: | medical image processing, cardiac image registration, data fusion, MR, PET, MCG, visualization |
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Abstract:The registration and fusion of information from multiple cardiac image modalities such as magnetic resonance imaging (MRI), X-ray computed tomography (CT), positron emission tomography (PET) and single photon emission computed tomography (SPECT) has been of increasing interest to the medical community as tools for furthering physiological understanding and for diagnostic of ischemic heart diseases. Ischemic heart diseases and their consequence, myocardial infarct, are the leading cause of mortality in industrial countries. In cardiac image registration and data fusion, the combination of structural information from MR images and functional information from PET and SPECT is of special interest in the estimation of myocardial function and viability. Cardiac image registration is a more complex problem than brain image registration. The non-rigid motion of the heart and the thorax structures introduce additional difficulties in registration.
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Parts:Mäkelä T. J., Clarysse P., Sipilä O., Pauna N., Pham Q. C., Katila T. and Magnin I. E., 2002. A review of cardiac image registration methods. IEEE Transactions on Medical Imaging 21, No. 9, pages 1011-1021. [article1.pdf] © 2002 IEEE. By permission.Mäkelä T. J., Clarysse P., Lötjönen J., Sipilä O., Lauerma K., Hänninen H., Pyökkimies E.-P., Nenonen J., Knuuti J., Katila T. and Magnin I. E., 2001. A new method for the registration of cardiac PET and MR images using deformable model based segmentation of the main thorax structures. Niessen W. and Viergever M. A. (Eds.), Proceedings of the 4th International Conference on Medical Image Computing and Computer Assisted Intervention (MICCAI'01). Springer. Lecture Notes in Computer Science 2208, pages 557-564. [article2.pdf] © 2001 Springer-Verlag. By permission.Mäkelä T. J., Pham Q. C., Clarysse P., Nenonen J., Lötjönen J., Sipilä O., Hänninen H., Lauerma K., Knuuti J., Katila T. and Magnin I. E., 2003. A 3-D model-based registration approach for the PET, MR and MCG cardiac data fusion. Medical Image Analysis 7, No. 3, pages 377-389. [article3.pdf] © 2003 by authors and © 2003 Elsevier Science. By permission.Lötjönen J. and Mäkelä T. J., 2001. Elastic matching using a deformation sphere. Niessen W. and Viergever M. A. (Eds.), Proceedings of the 4th International Conference on Medical Image Computing and Computer Assisted Intervention (MICCAI'01). Springer. Lecture Notes in Computer Science 2208, pages 541-548. [article4.pdf] © 2001 Springer-Verlag. By permission.Mäkelä T. J., Lötjönen J., Sipilä O., Lauerma K., Nenonen J., Katila T. and Magnin I. E., 2002. Error analysis of registering of anatomical and functional cardiac data using external markers. Nowak H., Haueisen J., Giesler F. and Huonker R. (Eds.), Proceedings of the 13th International Conference on Biomagnetism (BIOMAG'02), pages 842-845. [article5.pdf] © 2002 VDE Verlag GMBH. By permission.Lauerma K., Niemi P., Hänninen H., Janatuinen T., Voipio-Pulkki L.-M., Knuuti J., Toivonen L., Mäkelä T. J., Mäkijärvi M. and Aronen H. J., 2000. Multimodality MR imaging assessment of myocardial viability: combination of first-pass and late contrast enhancement to wall motion dynamics and comparison with FDG PET – initial experience. Radiology 217, No. 3, pages 729-736. [article6.pdf] © 2000 Radiological Society of North America. By permission. |
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