Title
Rapidly generate lumbar spine volume mesh
Abstract
This paper presents a new method for rapidly generating accurate patient-specific lumbar spine volume mesh for finite element analysis. First, initial isosurface of the vertebral body is extracted from CT volume data. Then, a series of non-parallel "best cross-section planes" are placed semi-automatic ally according to the morphologic characteristic of surface model, forming a "non-regular piecewise subspace". This subspace and the embedded surface model are transformed to a "regular subspace" covered by a regular structure grid. Based on the information from the 2D contours of warped surface model, the "structure grid contours" are generated, from which a surface mesh of high quality is generated. At the same time, these grid nodes inside of the surface mesh are recorded as insertion points, and the tetrahedral volume mesh is created quickly by a boundary constrained Delaunay triangulation procedure in the "regular subspace". Finally a two-step reverse transform procedure is employed to recover the shape feature of the lumbar volume mesh in the original three-dimensional space, achieving a smooth change of element size transition.
Year
DOI
Venue
2005
10.1109/CAD-CG.2005.66
CAD/Graphics
Keywords
Field
DocType
structure grid contours,lumbar volume mesh,tetrahedral volume mesh,volume mesh,ct volume data,reverse transform,mesh generation,vertebral body,embedded surface model,rapidly generate lumbar spine,patient-specific lumbar spine volume mesh,lumbar spine volume mesh generation,surface model,regular subspace,finite element analysis,non-regular piecewise subspace,2d contours,nonregular piecewise subspace,boundary constrained delaunay triangulation,surface mesh,warped surface model,medical image processing,nonparallel best cross-section planes,three dimensional,cross section,constrained delaunay triangulation
Subspace topology,Computer science,Volume mesh,Isosurface,Finite element method,Geometry,Constrained Delaunay triangulation,Mesh generation,Grid,Piecewise
Conference
ISBN
Citations 
PageRank 
0-7695-2473-7
1
0.41
References 
Authors
2
4
Name
Order
Citations
PageRank
Shenghui Liao17014.44
Ruofeng Tong246649.69
Minke Wang310.41
Jingxiang Dong410.41