Mass preserving image registration for lung CT
Explore this paper's citation graph
Summary
A tissue appearance model based on the principle of preservation of total lung mass is proposed and is incorporated into a standard image registration framework with a composition of a global affine and several free-form B-Spline transformations with increasing grid resolution.
- Type
- article
- Published
- 2012-05-01
- Cited by
- 79
- References
- 47
- OpenAlex
- https://openalex.org/W22336692
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:11413369
Keywords
Sociology, Political science
References
- An Image Morphing Technique Based on Optimal Mass Preserving Mapping
- 4D-CT lung motion estimation with deformable registration: quantification of motion nonlinearity and hysteresis.
- Combination of intensity-based image registration with 3D simulation in radiation therapy
- Stochastic Approximation and Recursive Algorithms and Applications
- Semi-automatic Reference Standard Construction for Quantitative Evaluation of Lung CT Registration
- Diffeomorphic Registration Using B-Splines
- Elastic image mapping for 4-D dose estimation in thoracic radiotherapy.
- Local tissue-weight-based nonrigid registration of lung images with application to regional ventilation
- Validation and comparison of registration methods for free-breathing 4D lung CT
- Simulation of four-dimensional CT images from deformable registration between inhale and exhale breath-hold CT scans.
- A rigidity penalty term for nonrigid registration.
- Vessel-guided airway tree segmentation: A voxel classification approach
- Dynamic ventilation imaging from four-dimensional computed tomography
- Atlas-driven lung lobe segmentation in volumetric X-ray CT images
- Mass preserving registration for lung CT
- Mass preserving nonrigid registration of CT lung images using cubic B-spline.
- Towards local estimation of emphysema progression using image registration
- Registration-based estimates of local lung tissue expansion compared to xenon CT measures of specific ventilation
- Respiratory lung motion analysis using a nonlinear motion correction technique for respiratory-gated lung perfusion SPECT images
- Evaluation of deformable registration of patient lung 4DCT with subanatomical region segmentations.
Cited by
- Detection of Time-Varying Structures by Large Deformation Diffeomorphic Metric Mapping to Aid Reading of High-Resolution CT Images of the Lung
- A Symmetric 4D Registration Algorithm for Respiratory Motion Modeling
- A Hierarchical Scheme for Geodesic Anatomical Labeling of Airway Trees
- Selecting registration schemes in case of interstitial lung disease follow-up in CT.
- Accuracy and Utility of Deformable Image Registration in (68)Ga 4D PET/CT Assessment of Pulmonary Perfusion Changes During and After Lung Radiation Therapy.
- Nonrigid Registration of Volumetric Images Using Ranked Order Statistics
- Highly accurate fast lung CT registration
- On the need for comprehensive validation of deformable image registration, investigated with a novel 3D deformable dosimeter
- Reconstruction of Banknote Fragments Based on Keypoint Matching Method
- Statistical separability of local motions in volumetric images
- An implicit sliding-motion preserving regularisation via bilateral filtering for deformable image registration
- MRF-Based Deformable Registration and Ventilation Estimation of Lung CT
- Deformable image registration for temporal subtraction of chest radiographs
- Reversibility of trapped air on chest computed tomography in cystic fibrosis patients.
- Nonrigid image registration using similarity measure based on spatially weighted global probability distribution function
- Super-resolution reconstruction for 4D computed tomography of the lung via the projections onto convex sets approach.
- Bidirectional Elastic Image Registration Using B-Spline Affine Transformation
- Effect of inspiration on airway dimensions measured in maximal inspiration CT images of subjects without airflow limitation
- Geodesic Atlas-Based Labeling of Anatomical Trees: Application and Evaluation on Airways Extracted From CT
- Accurate inverse-consistent symmetric optical flow for 4D CT lung registration
Related papers
No related papers recorded.