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      Myocardial transversely isotropic material parameter estimation from in-silico measurements based on a reduced-order unscented Kalman filter.

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          Abstract

          Parameter estimation from non-invasive measurements is a crucial step in patient-specific cardiac modeling. It also has the potential to provide significant assistance in the clinical diagnosis of cardiac diseases through the quantification of myocardial material heterogeneity. In this paper, we formulate a novel Reduced-order Unscented Kalman Filter (rUKF) applied to the left ventricular (LV) nonlinear mechanical model based on cubic-Hermite finite elements. Material parameters in the widely-employed transversely isotropic Guccione's constitutive law are successfully identified for both homogeneous and heterogeneous cases. We conclude that the four parameters in Guccione's law can be uniquely and correctly determined in-silico from noisy displacement measurements of material points located on the myocardial surfaces. The future application of this novel and effective approach to real clinical measurements is thus promising.

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          Author and article information

          Journal
          J Mech Behav Biomed Mater
          Journal of the mechanical behavior of biomedical materials
          1878-0180
          1878-0180
          Oct 2011
          : 4
          : 7
          Affiliations
          [1 ] Computing Laboratory, University of Oxford, Wolfson Building, Parks Road Oxford OX1 3QD, UK.
          Article
          S1751-6161(11)00063-4
          10.1016/j.jmbbm.2011.03.018
          21783118
          831c45d5-e751-4a2b-ad73-0605f2cb4961
          Copyright © 2011 Elsevier Ltd. All rights reserved.
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