Factors influencing the accuracy of biomechanical breast models.
about
Computational simulation of breast compression based on segmented breast and fibroglandular tissues on magnetic resonance imagesSimultaneous Estimation of Elasticity for Multiple Deformable Bodies.Symmetric Biomechanically Guided Prone-to-Supine Breast Image RegistrationSimulation-based joint estimation of body deformation and elasticity parameters for medical image analysisAutomatic generation of boundary conditions using demons nonrigid image registration for use in 3-D modality-independent elastography.Interrogating a multifactorial model of breast conserving therapy with clinical data.Validation of a method for measuring the volumetric breast density from digital mammograms.An analysis of the mechanical parameters used for finite element compression of a high-resolution 3D breast phantom.Image similarity and tissue overlaps as surrogates for image registration accuracy: widely used but unreliable.The effect of intramuscular fat on skeletal muscle mechanics: implications for the elderly and obese.Population of 224 realistic human subject-based computational breast phantoms.An Anthropometric-Based Subject-Specific Finite Element Model of the Human Breast for Predicting Large Deformations.Finite-element modeling of compression and gravity on a population of breast phantoms for multimodality imaging simulation.Methodology based on genetic heuristics for in-vivo characterizing the patient-specific biomechanical behavior of the breast tissuesAdvances in finite element simulations of elastosonography for breast lesion detection.Comparison of different material models to simulate 3-d breast deformations using finite element analysis.A study of breast motion using non-linear dynamic FE analysis.Toward efficient biomechanical-based deformable image registration of lungs for image-guided radiotherapy.A finite element head and neck model as a supportive tool for deformable image registration.Large breast compressions: observations and evaluation of simulations.A step-by-step review on patient-specific biomechanical finite element models for breast MRI to x-ray mammography registration.Validation of biomechanical deformable image registration in the abdomen, thorax, and pelvis in a commercial radiotherapy treatment planning system.A complete software application for automatic registration of x-ray mammography and magnetic resonance images.A voxel-based finite element model for the prediction of bladder deformation.Finite element based bladder modeling for image-guided radiotherapy of bladder cancer.Quantitative evaluation of free-form deformation registration for dynamic contrast-enhanced MR mammography.Segmentation of the breast skin and its influence in the simulation of the breast compression during an X-ray mammography.
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P2860
Factors influencing the accuracy of biomechanical breast models.
description
2006 nî lūn-bûn
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2006年の論文
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2006年学术文章
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2006年学术文章
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name
Factors influencing the accuracy of biomechanical breast models.
@en
Factors influencing the accuracy of biomechanical breast models.
@nl
type
label
Factors influencing the accuracy of biomechanical breast models.
@en
Factors influencing the accuracy of biomechanical breast models.
@nl
prefLabel
Factors influencing the accuracy of biomechanical breast models.
@en
Factors influencing the accuracy of biomechanical breast models.
@nl
P2093
P2860
P356
P1433
P1476
Factors influencing the accuracy of biomechanical breast models
@en
P2093
Christine Tanner
D Rodney Hose
David J Hawkes
Derek L G Hill
P2860
P304
P356
10.1118/1.2198315
P407
P577
2006-06-01T00:00:00Z