Keywords: ناهمگنی شدت; Bias field; Intensity inhomogeneity; Fuzzy membership mask; Spatial continuity information;
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Keywords: ناهمگنی شدت; Image segmentation; Level set; Gaussian distribution; Bias field; Intensity inhomogeneity;
Keywords: ناهمگنی شدت; Image segmentation; Split Bregman method; Intensity inhomogeneity; Noise; 90C47; 65K10; 49M37;
Keywords: ناهمگنی شدت; Level set; Intensity inhomogeneity; Dual constraint relaxation; Image segmentation;
Keywords: ناهمگنی شدت; Image segmentation; Active contour models; Intensity inhomogeneity; Local edge entropy;
Keywords: ناهمگنی شدت; Level set; Image segmentation; Local fitted images; Intensity inhomogeneity; Bias field;
Keywords: ناهمگنی شدت; Level set; Lesion segmentation; Intensity inhomogeneity; MRI;
Keywords: ناهمگنی شدت; Brain MR image segmentation; Fuzzy clustering algorithm; Intensity inhomogeneity; Bias field;
Keywords: ناهمگنی شدت; Level set; Intensity inhomogeneity; Image segmentation; Salient fitting;
Keywords: ناهمگنی شدت; Image segmentation; Level set; Watershed transformation; Intensity inhomogeneity; Spring simulation; Energy functional;
Keywords: ناهمگنی شدت; Image segmentation; Active contour; Level set; Intensity inhomogeneity; Dual algorithm;
Keywords: ناهمگنی شدت; Image segmentation; Intensity inhomogeneity; LGBF model; Generalized Gaussian kernel function
Keywords: ناهمگنی شدت; Medical image segmentation; Intensity inhomogeneity; Complex composition; Local region-based module; Bias field correction; Multi-parameters intensity fitting
Keywords: ناهمگنی شدت; Hermite differential operator; Image segmentation; Intensity inhomogeneity; Level set; Multi-scale
Keywords: ناهمگنی شدت; Medical image segmentation; Intensity inhomogeneity; Level set method; Maximum a posteriori probability (MAP); Active contour model
Keywords: ناهمگنی شدت; Active contour; Fuzzy energy; Intensity inhomogeneity; Curve evolution
Keywords: ناهمگنی شدت; Image segmentation; Level set; Intensity inhomogeneity; Dual minimization; Multi-layer structure;
Keywords: ناهمگنی شدت; Image segmentation; Intensity inhomogeneity; Level set; Local region; Multi-scale; Statistical analysis
Keywords: ناهمگنی شدت; Active contour; Level set; Natural image segmentation; Intensity inhomogeneity; Saliency-inspired initial contour;
Keywords: ناهمگنی شدت; C–V mode; LBF model; Image segmentation; Intensity inhomogeneity; Active contour
Keywords: ناهمگنی شدت; local and global intensity information; partial differential equation; intensity inhomogeneity; image segmentation.
Keywords: ناهمگنی شدت; Image segmentation; Intensity inhomogeneity; Level set method; Chan–Vese model; LBF model
Keywords: ناهمگنی شدت; Segmentation; Cerebral blood vessel; Intensity inhomogeneity; Statistical model
Morphological active contour driven by local and global intensity fitting for spinal cord segmentation from MR images
Keywords: ناهمگنی شدت; Spinal cord; Segmentation; Morphological active contour; Intensity inhomogeneity;
Automatic pharynx and larynx cancer segmentation framework (PLCSF) on contrast enhanced MR images
Keywords: ناهمگنی شدت; BoT; base of tongue; Cov; coefficient of variation; DSC; dice similarity coefficient; FCM/MFCM; fuzzy c-means/modified fuzzy c-means; IIH; intensity inhomogeneity; LSM; level set method; MHD; modified Hausdorff distance; MR/MRI; magnetic resonance/magneti
Robust generative asymmetric GMM for brain MR image segmentation
Keywords: ناهمگنی شدت; Gaussian mixture model; Asymmetric distribution; Expectation-maximization algorithm; Brain MR image segmentation; Markov random fields; Intensity inhomogeneity;
Correntropy-based level set method for medical image segmentation and bias correction
Keywords: ناهمگنی شدت; Medical image segmentation; Level set method; Bias field correction; Intensity inhomogeneity; Active contour model;
Retinex theory based active contour model for segmentation of inhomogeneous images
Keywords: ناهمگنی شدت; Image segmentation; Intensity inhomogeneity; Split-Bregman algorithm; Active contour model; Retinex theory
An efficient level set method for simultaneous intensity inhomogeneity correction and segmentation of MR images
Keywords: ناهمگنی شدت; MRI; Segmentation; Bias field; Intensity inhomogeneity; Level set
Segmentation of longitudinal brain MR images using bias correction embedded fuzzy c-means with non-locally spatio-temporal regularization
Keywords: ناهمگنی شدت; Longitudinal segmentation; Brain atrophy; Non-local means de-noising; Intensity inhomogeneity; CUDA
An improved anisotropic hierarchical fuzzy c-means method based on multivariate student t-distribution for brain MRI segmentation
Keywords: ناهمگنی شدت; Anisotropic spatial information; Hierarchical FCM; Multivariate student t-distribution; Intensity inhomogeneity
Multiplicative intrinsic component optimization (MICO) for MRI bias field estimation and tissue segmentation
Keywords: ناهمگنی شدت; MRI; Brain segmentation; Intensity inhomogeneity; Bias field estimation; Bias field correction; 4D segmentation
Robust spatially constrained fuzzy c-means algorithm for brain MR image segmentation
Keywords: ناهمگنی شدت; Image segmentation; Magnetic resonance imaging; Fuzzy c-means; Spatial information; Intensity inhomogeneity
Segmentation of sonar images with intensity inhomogeneity based on improved MRF
Keywords: ناهمگنی شدت; Sonar image segmentation; Markov random field; Simple linear iterative clustering; Intensity inhomogeneity;
Adaptive segmentation of magnetic resonance images with intensity inhomogeneity using level set method
Keywords: ناهمگنی شدت; Image segmentation; Magnetic resonance; Intensity inhomogeneity; Level set
Active contours driven by local and global probability distributions
Keywords: ناهمگنی شدت; Image segmentation; Signed pressure force function; Active contour model; Intensity inhomogeneity; Level set method; Local probability distribution; Data-based prior probability; Hybrid model
Efficient inhomogeneity compensation using fuzzy c-means clustering models
Keywords: ناهمگنی شدت; Image segmentation; Magnetic resonance imaging; Intensity inhomogeneity; c-Means clustering; Histogram;
Generalized rough fuzzy c-means algorithm for brain MR image segmentation
Keywords: ناهمگنی شدت; Brain magnetic resonance image; Image segmentation; Intensity inhomogeneity; Fuzzy c-means algorithm; Rough set; Rough-fuzzy c-means algorithm
Active contours driven by weighted region-scalable fitting energy based on local entropy
Keywords: ناهمگنی شدت; Image segmentation; Intensity inhomogeneity; Active contour model; Level set method; Variational method; Local entropy
Intensity inhomogeneity compensation and segmentation of MR brain images using hybrid c-means clustering models
Keywords: ناهمگنی شدت; Image segmentation; Intensity inhomogeneity; Magnetic resonance imaging; Fuzzy c-means clustering; Hybrid c-means clustering; Context dependent filter; Morphological operations
A modified possibilistic fuzzy c-means clustering algorithm for bias field estimation and segmentation of brain MR image
Keywords: ناهمگنی شدت; Brain MR image segmentation; Intensity inhomogeneity; Possibilistic fuzzy c-means algorithm; Anisotropic weight; Coherent local and global intensity
Level set segmentation of brain magnetic resonance images based on local Gaussian distribution fitting energy
Keywords: ناهمگنی شدت; Intensity inhomogeneity; Brain MR images; Probability distribution; Level set method
An efficient local Chan–Vese model for image segmentation
Keywords: ناهمگنی شدت; Extended structure tensor; Image segmentation; Intensity inhomogeneity; Level set method; Local Chan–Vese model
Robustness of an adaptive MRI segmentation algorithm parametric intensity inhomogeneity modeling
Keywords: ناهمگنی شدت; 07.05.Mh; 07.05.Pj; 87.63.lm; 83.85.FgMRI; Intensity inhomogeneity; Image segmentation; Parametric intensity inhomogeneity models; Adaptive image correction
Active contours driven by local and global intensity fitting energy with application to brain MR image segmentation
Keywords: ناهمگنی شدت; Image segmentation; Intensity inhomogeneity; Active contour model; Level set method; Variational method
Active contours driven by local Gaussian distribution fitting energy
Keywords: ناهمگنی شدت; Image segmentation; Intensity inhomogeneity; Active contour model; Probability distribution; Level set method; Variational method