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Titlebook: Biomedical Image Registration; Second International James C. Gee,J. B. Antoine Maintz,Michael W. Vanni Conference proceedings 2003 Springer

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Labour Relations and Economic Performancefine but globally smooth, and explicitly accounts for local and global variations in image intensities. An explicit model of missing data is also incorporated, allowing us to simultaneously segment and register images with partial or missing data. The algorithm is built upon a differential multiscal
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Labour Relations and Economic Performancehave to rely on statistics, and consequently, they require relatively large image regions to operate. This makes the detection of localized image discrepancies difficult. As a solution we propose point similarity measures, which can measure similarity of arbitrarily small image regions, including si
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Incomes Policies in a North American Settingd such as to minimize the Kullback-Leibler distance between the actual and ideal joint probability distribution of voxel class labels, which are assigned to each image individually by a previous segmentation process. We evaluate the performance of the method for inter-subject brain registration with
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https://doi.org/10.1057/9780333992722are similar to those of Zoellei. However, in order to obtain a stopping criterion we use the Resilient Backpropagation as optimizer. Performing the registration on artificial images we obtain a speedup of approx. a factor of 10. We applied the matching approach to calibrate C-arm positions and found
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https://doi.org/10.1057/9780333992722sonance Images (MRIs), EPIs are of relatively poor quality for discerning anatomic features and are often registered with corresponding MRIs to map brain activity to neuroanatomy. In this paper we demonstrate the utility of a technique to register an EPI-MRI pair by minimizing the discrepancy betwee
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