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Titlebook: Biomedical Image Registration; 5th International Wo Beno?t M. Dawant,Gary E. Christensen,Daniel Ruecke Conference proceedings 2012 Springer

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發(fā)表于 2025-3-21 19:43:02 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Biomedical Image Registration
期刊簡稱5th International Wo
影響因子2023Beno?t M. Dawant,Gary E. Christensen,Daniel Ruecke
視頻videohttp://file.papertrans.cn/189/188056/188056.mp4
發(fā)行地址Up-to-date results.Fast-track conference proceedings.State-of-the-art research
學科分類Lecture Notes in Computer Science
圖書封面Titlebook: Biomedical Image Registration; 5th International Wo Beno?t M. Dawant,Gary E. Christensen,Daniel Ruecke Conference proceedings 2012 Springer
影響因子This book constitutes the refereed proceedings of the 5th International Workshop on Biomedical Image Registration, WBIR 2012, held in Nashville, Tennessee, USA, in July 2012. The 20 full papers and 11 poster papers included in this volume were carefully reviewed and selected from 44 submitted papers. They full papers are organized in the following topical sections: multiple image sets; brain; non-rigid anatomy; and frameworks and similarity measures.
Pindex Conference proceedings 2012
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Introduction to Biological Macromolecules,d to implement using readily available large displacement diffeomorphic metric mapping (LDDMM) shooting algorithms and decouples the problem into pairwise image registrations allowing parallel computations. We evaluate the approach using 2D synthetic images and real 3D brain images.
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Consolidation of Axiomatic Set Theoryract the centerline using a minimum cost path approach in which the cost is defined by medialness and an intensity based similarity term. The two centerlines are aligned by an iterative closest point (ICP) algorithm, using rigid and thin-plate spline transformation models. The resulting point corres
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Registration of Free-Hand Ultrasound and MRI of Carotid Arteries through Combination of Point-Based ract the centerline using a minimum cost path approach in which the cost is defined by medialness and an intensity based similarity term. The two centerlines are aligned by an iterative closest point (ICP) algorithm, using rigid and thin-plate spline transformation models. The resulting point corres
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A Method for Automated Cortical Surface Registration and Labelingefine the locations of the sulcal curves sulci and label boundaries further, such that they follow the true sulcal fundi more closely. The flow is formulated using a level set based method on the cortical surface, which represents the curves as zero level sets. We also incorporate a curvature based
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Origins of the Theory of Point-Sets, the results were quantified on 14 cross sections of interest. The main contribution of this work is that the registered results could be used for systematic labeling of tissues, which ultimately will lead to reliable construction of training dataset for feature extraction and supervised classification of atherosclerotic tissues.
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