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      Computation of intra-operative brain shift using dynamic relaxation.

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          Abstract

          Many researchers have proposed the use of biomechanical models for high accuracy soft organ non-rigid image registration, but one main problem in using comprehensive models is the long computation time required to obtain the solution. In this paper we propose to use the Total Lagrangian formulation of the Finite Element method together with Dynamic Relaxation for computing intra-operative organ deformations. We study the best ways of estimating the parameters involved and we propose a termination criteria that can be used in order to obtain fast results with prescribed accuracy. The simulation results prove the accuracy and computational efficiency of the method, even in cases involving large deformations, nonlinear materials and contacts.

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          Author and article information

          Journal
          Comput Methods Appl Mech Eng
          Computer methods in applied mechanics and engineering
          0045-7825
          0045-7825
          Sep 1 2009
          : 198
          : 41
          Affiliations
          [1 ] Intelligent Systems for Medicine Laboratory, School of Mechanical Engineering, The University of Western Australia, Perth, AUSTRALIA, { grandj@mech.uwa.edu.au , adwit@mech.uwa.edu.au , kmiller@mech.uwa.edu.au }
          Article
          NIHMS128432
          10.1016/j.cma.2009.06.012
          2747121
          20161059
          378b0294-dba1-47b4-89a6-ad83d0c79ccc
          History

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