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» Wires: A Geometric Deformation Technique
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PG
1998
IEEE
14 years 2 months ago
Interactive Mesh Dragging with Adaptive Remeshing Technique
We propose a 3D mesh-dragging method useful for intuitive, efficient geometric modeling of free-form polygonal models. With our method, the user can drag a part of a triangular me...
Hiromasa Suzuki, Yusuke Sakurai, Takashi Kanai, Fu...
MICCAI
2000
Springer
14 years 1 months ago
Adaptive-Focus Statistical Shape Model for Segmentation of 3D MR Structures
This paper presents a deformable model for automatically segmenting objects from volumetric MR images and obtaining point correspondences, using geometric and statistical informati...
Dinggang Shen, Christos Davatzikos
MICCAI
2009
Springer
14 years 11 months ago
Real-Time Prediction of Brain Shift Using Nonlinear Finite Element Algorithms
Patient-specific biomechanical models implemented using specialized nonlinear (i.e. taking into account material and geometric nonlinearities) finite element procedures were applie...
Grand Roman Joldes, Adam Wittek, Mathieu Couton,...
MICCAI
2005
Springer
14 years 3 months ago
Brain Shift Computation Using a Fully Nonlinear Biomechanical Model
Abstract. In the present study, fully nonlinear (i.e. accounting for both geometric and material nonlinearities) patient specific finite element brain model was applied to predict ...
Adam Wittek, Ron Kikinis, Simon K. Warfield, Karol...
JVCA
2008
112views more  JVCA 2008»
13 years 9 months ago
Constraint-based motion synthesis for deformable models
We present a fast goal-directed motion synthesis technique that integrates sample-based planning methods with constraint-based dynamics simulation using a finite element formulati...
William Moss, Ming C. Lin, Dinesh Manocha