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  4. 3D anisotropic diffusion on GPUs by closed-form local tensor computations
 
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2013
Journal Article
Titel

3D anisotropic diffusion on GPUs by closed-form local tensor computations

Abstract
We present an efficient implementation of volumetric anisotropic image diffusion filters on modern programmable graphics processing units (GPUs), where the mathematics behind volumetric diffusion is effectively reduced to the diffusion in 2D images. We hereby avoid the computational bottleneck of a time consuming eigenvalue decomposition in R3. Instead, we use a projection of the Hessian matrix along the surface normal onto the tangent plane of the local isodensity surface and solve for the remaining two tangent space eigenvectors. We derive closed formulas to achieve this and prevent the GPU code from branching. We show that our most complex volumetric anisotropic diffusion filters gain a speed up of more than 600 compared to a CPU solution.
Author(s)
Kuijper, Arjan
Fraunhofer-Institut für Graphische Datenverarbeitung IGD
Schwarzkopf, Andreas
TU Darmstadt GRIS
Kalbe, Thomas
TU Darmstadt GRIS
Bajaj, Chandrajit L.
Univ. of Texas
Roth, Stefan
TU Darmstadt GRIS
Goesele, Michael
TU Darmstadt GRIS
Zeitschrift
Numerical mathematics
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Language
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Fraunhofer-Institut für Graphische Datenverarbeitung IGD
Tags
  • image processing

  • image enhancement

  • tensors

  • anisotropy

  • filtering

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