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Medical Imaging and Augmented Reality: 4th International Workshop Tokyo, Japan, August 1-2, 2008, Proceedings (Lecture Notes in Computer Science / . . ... Pattern Recognition, and Graphics): 5128 - Brossura

 
9783540799818: Medical Imaging and Augmented Reality: 4th International Workshop Tokyo, Japan, August 1-2, 2008, Proceedings (Lecture Notes in Computer Science / . . ... Pattern Recognition, and Graphics): 5128

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The 4th International Workshop on Medical Imaging and Augmented Reality, MIAR 2008, was held at the University of Tokyo, Tokyo, Japan during August 1–2, 2008. The goal of MIAR 2008 was to bring together researchersin medical imaging and intervention to present state-of-the-art developments in this ever-growing research area. Rapid technical advances in medical imaging, including its gr- ing application in drug/gene therapy and invasive/interventional procedures, have attracted signi?cant interest in the close integration of research in the life sciences, medicine, physical sciences, and engineering. Current research is also motivated by the fact that medical imaging is moving increasingly from a p- marily diagnostic modality towards a therapeutic and interventional aid, driven by the streamlining of diagnostic and therapeutic processes for human diseases by means of imaging modalities and robotic-assisted surgery. The impact of MIAR on these ?elds increases each year, and the quality of submitted papers this yearwas veryimpressive. We received90 full submissions, which were subsequently reviewed by up to ?ve reviewers. Reviewer a?liations were carefully checked against author a?liations to avoid con?icts of interest, and the review process was run as a double-blind process. A special procedure was also devised for papers from the universities of the organizers, upholding a double-blind review process for these papers. The MIAR 2008 Program C- mittee ?nally accepted 44 full papers. For this workshop, we also included three papers from the invited speakers coveringregistration and segmentation, virtual reality, and perceptual docking for robotic control.

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Contenuti

Invited Contributions.- Towards a Medical Virtual Reality Environment for Minimally Invasive Cardiac Surgery.- Joint Registration and Segmentation of Serial Lung CT Images in Microendoscopy Molecular Image-Guided Therapy.- Perceptual Docking for Robotic Control.- Surgical Planning and Simulation.- An Integration of Statistical Deformable Model and Finite Element Method for Bone-Related Soft Tissue Prediction in Orthognathic Surgery Planning.- Automated Preoperative Planning of Femoral Component for Total Hip Arthroplasty (THA) from 3D CT Images.- Validation of Viscoelastic and Nonlinear Liver Model for Needle Insertion from in Vivo Experiments.- Simulation of Active Cardiac Electromechanical Dynamics.- Wheelchair Propulsion Analysis System That Incorporates Human Skeletal Muscular Model Analyses on the Flat Floor and Slope.- Medical Image Computing.- Automatic Detection of Fiducial Marker Center Based on Shape Index and Curvedness.- Modality-Independent Determination of Vertebral Position and Rotation in 3D.- Coupled Meshfree-BEM Platform for Electrocardiographic Simulation: Modeling and Validations.- Source Localization of Subtopographies Decomposed by Radial Basis Functions.- Estimation of the Current Density in a Dynamic Heart Model and Visualization of Its Propagation.- Image Analysis.- Identification of Atrophy Patterns in Alzheimer’s Disease Based on SVM Feature Selection and Anatomical Parcellation.- A Surface-Based Fractal Information Dimension Method for Cortical Complexity Analysis.- Wavelet-Based Compression and Segmentation of Hyperspectral Images in Surgery.- A Novel Level Set Based Shape Prior Method for Liver Segmentation from MRI Images.- Shape Modeling and Morphometry.- Statistical Shape Space Analysis Based on Level Sets.- Statistical Piecewise Assembled Model (SPAM) for the Representation of Highly Deformable Medical Organs.- Amygdala Surface Modeling with Weighted Spherical Harmonics.- Kalman Filtering for Frame-by-Frame CT to Ultrasound Rigid Registration.- Cardiac PET Motion Correction Using Materially Constrained Transform Models.- Image-Guided Robotics.- Image Guidance for Robotic Minimally Invasive Coronary Artery Bypass.- MRI-Compatible Rigid and Flexible Outer Sheath Device with Pneumatic Locking Mechanism for Minimally Invasive Surgery.- MR Compatible Tactile Sensing and Noise Analysis in a 1.5 Tesla MR System.- A Framework of the Non-invasive Ultrasound Theragnostic System.- Image-Guided Intervention.- In Vivo Evaluation of a Guidance System for Computer Assisted Robotized Needle Insertion Devoted to Small Animals.- Composite-Type Optical Fiberscope for Laser Surgery for Twin-to-Twin Transfusion Syndrome.- Surgical Manipulator with Balloon for Stabilizing Fetus in Utero under Ultrasound Guidance.- Investigation of Partial Directed Coherence for Hand-Eye Coordination in Laparoscopic Training.- A Virtual Reality Patient and Environments for Image Guided Diagnosis.- Interventional Imaging.- A Navigation System for Brain Surgery Using Computer Vision Technology.- Computer-Aided Delivery of High-Intensity Focused Ultrasound (HIFU) for Creation of an Atrial Septal Defect in Vivo.- Basic Study on Real-Time Simulation Using Mass Spring System for Robotic Surgery.- A Precise Robotic Ablation and Division Mechanism for Liver Resection.- Image Registration.- Fast Image Mapping of Endoscopic Image Mosaics with Three-Dimensional Ultrasound Image for Intrauterine Treatment of Twin-to-Twin Transfusion Syndrome.- Non-rigid 2D-3D Registration Based on Support Vector Regression Estimated Similarity Metric.- Real-Time Autostereoscopic Visualization of Registration-Generated 4D MR Image of Beating Heart.- Augmented Reality.- Realtime Organ Tracking for Endoscopic Augmented Reality Visualization Using Miniature Wireless Magnetic Tracker.- Fusion of Laser Guidance and 3-D Autostereoscopic Image Overlay for Precision-Guided Surgery.- Augmented Display of Anatomical Names of Bronchial Branches for Bronchoscopy Assistance.- Non-metal Slice Image Overlay Display System Used Inside the Open Type MRI.- Image Segmentation.- Extracting Curve Skeletons from Gray Value Images for Virtual Endoscopy.- Automatic Hepatic Vessel Segmentation Using Graphics Hardware.- Learning Longitudinal Deformations for Adaptive Segmentation of Lung Fields from Serial Chest Radiographs.- Automatic Extraction of Proximal Femur Contours from Calibrated X-Ray Images Using 3D Statistical Models.- Anisotropic Haralick Edge Detection Scheme with Application to Vessel Segmentation.

Dalla quarta di copertina

This book constitutes the refereed proceedings of the 4th International Workshop on Medical Imaging and Augmented Reality, MIAR 2008, held in Tokyo, Japan, in August 2008.

The 44 revised full papers presented together with 3 invited papers were carefully reviewed and selected from 90 submissions. The papers are organized in topical sections on surgical planning and simulation, medical image computing, image analysis, shape modeling and morphometry, image-guided robotics, image-guided intervention, interventional imaging, image registration, augmented reality, and image segmentation.

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  • EditoreSpringer
  • Data di pubblicazione2008
  • ISBN 10 3540799818
  • ISBN 13 9783540799818
  • RilegaturaCopertina flessibile
  • Numero edizione1
  • Numero di pagine464
  • RedattoreDohi Takeyoshi

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soft cover. Condizione: Gebraucht. Gebraucht - Wie neu -The 4th International Workshop on Medical Imaging and Augmented Reality, MIAR 2008, was held at the University of Tokyo, Tokyo, Japan during August 1-2, 2008. The goal of MIAR 2008 was to bring together researchersin medical imaging and intervention to present state-of-the-art developments in this ever-growing research area. Rapid technical advances in medical imaging, including its gr- ing application in drug/gene therapy and invasive/interventional procedures, have attracted signi cant interest in the close integration of research in the life sciences, medicine, physical sciences, and engineering. Current research is also motivated by the fact that medical imaging is moving increasingly from a p- marily diagnostic modality towards a therapeutic and interventional aid, driven by the streamlining of diagnostic and therapeutic processes for human diseases by means of imaging modalities and robotic-assisted surgery. The impact of MIAR on these elds increases each year, and the quality of submitted papers this yearwas veryimpressive. We received90 full submissions, which were subsequently reviewed by up to ve reviewers. Reviewer a liations were carefully checked against author a liations to avoid con icts of interest, and the review process was run as a double-blind process. A special procedure was also devised for papers from the universities of the organizers, upholding a double-blind review process for these papers. The MIAR 2008 Program C- mittee nally accepted 44 full papers. For this workshop, we also included three papers from the invited speakers coveringregistration and segmentation, virtual reality, and perceptual docking for robotic control. 464 pp. Deutsch. Codice articolo 23320

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Taschenbuch. Condizione: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -The 4th International Workshop on Medical Imaging and Augmented Reality, MIAR 2008, was held at the University of Tokyo, Tokyo, Japan during August 1-2, 2008. The goal of MIAR 2008 was to bring together researchersin medical imaging and intervention to present state-of-the-art developments in this ever-growing research area. Rapid technical advances in medical imaging, including its gr- ing application in drug/gene therapy and invasive/interventional procedures, have attracted signi cant interest in the close integration of research in the life sciences, medicine, physical sciences, and engineering. Current research is also motivated by the fact that medical imaging is moving increasingly from a p- marily diagnostic modality towards a therapeutic and interventional aid, driven by the streamlining of diagnostic and therapeutic processes for human diseases by means of imaging modalities and robotic-assisted surgery. The impact of MIAR on these elds increases each year, and the quality of submitted papers this yearwas veryimpressive. We received90 full submissions, which were subsequently reviewed by up to ve reviewers. Reviewer a liations were carefully checked against author a liations to avoid con icts of interest, and the review process was run as a double-blind process. A special procedure was also devised for papers from the universities of the organizers, upholding a double-blind review process for these papers. The MIAR 2008 Program C- mittee nally accepted 44 full papers. For this workshop, we also included three papers from the invited speakers coveringregistration and segmentation, virtual reality, and perceptual docking for robotic control. 464 pp. Englisch. Codice articolo 9783540799818

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