Title of article
A Hybrid Eulerian–Lagrangian Approach for Thickness, Correspondence, and Gridding of Annular Tissues
Author/Authors
Kelvin R. Rocha، نويسنده , , Anthony J. Yezzi، نويسنده , , Jerry L. Prince، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2007
Pages
13
From page
636
To page
648
Abstract
We present a novel approach to efficiently compute
thickness, correspondence, and gridding of tissues between two
simply connected boundaries. The solution of Laplace’s equation
within the tissue region provides a harmonic function whose
gradient flow determines the correspondence trajectories going
from one boundary to the other. The proposed method uses and
expands upon two recently introduced techniques in order to compute
thickness and correspondences based on these trajectories.
Pairs of partial differential equations are efficiently computed
within an Eulerian framework and combined with a Lagrangian
approach so that correspondences trajectories are partially constructed
when necessary. Examples are presented in order to
compare the performance of this method with those of the pure
Lagrangian and pure Eulerian approaches. Results show that
the proposed technique takes advantage of both the speed of the
Eulerian approach and the accuracy of the Lagrangian approach.
Keywords
correspondence , correspondence trajectory , thickness. , partialdifferential equations (PDEs)
Journal title
IEEE TRANSACTIONS ON IMAGE PROCESSING
Serial Year
2007
Journal title
IEEE TRANSACTIONS ON IMAGE PROCESSING
Record number
395642
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