Page 72 - Read Online
P. 72

Page 14 of 14                                                   Morgan et al. Vessel Plus 2020;4:6  I  http://dx.doi.org/10.20517/2574-1209.2019.32

               64.  Guccione JM, McCulloch AD. Mechanics of active contraction in cardiac muscle: Part i--constitutive relations for fiber stress that
                   describe deactivation. J Biomech Eng 1993;115:72-81.
               65.  Wenk JF, Ge L, Zhang Z, Soleimani M, Potter DD, et al. A coupled biventricular finite element and lumped-parameter circulatory
                   system model of heart failure. Comput Methods Biomech Biomed Engin 2013;16:807-18.
               66.  Masithulela F. Bi-ventricular finite element model of right ventricle overload in the healthy rat heart. Biomed Mater Eng 2016;27:507-
                   25.
               67.  Sack KL, Aliotta E, Ennis DB, Choy JS, Kassab GS, et al. Construction and validation of subject-specific biventricular finite-element
                   models of healthy and failing swine hearts from high-resolution dt-mri. Front Physiol 2018;9:539.
               68.  Okada JI, Washio T, Nakagawa M, Watanabe M, Kadooka Y, et al. Multi-scale, tailor-made heart simulation can predict the effect of
                   cardiac resynchronization therapy. J Mol Cell Cardiol 2017;108:17-23.
               69.  Stevanella M, Votta E, Lemma M, Antona C, Redaelli A. Finite element modelling of the tricuspid valve: a preliminary study. Med Eng
                   Phys 2010;32:1213-23.
               70.  Lee CH, Laurence DW, Ross CJ, Kramer KE, Babu AR, et al. Mechanics of the tricuspid valve-from clinical diagnosis/treatment, in-
                   vivo and in-vitro investigations, to patient-specific biomechanical modeling. Bioengineering (Basel) 2019;6:47.
               71.  Kamensky D, Xu F, Lee CH, Yan J, Bazilevs Y, et al. A contact formulation based on a volumetric potential: application to isogeometric
                   simulations of atrioventricular valves. Comput Methods Appl Mech Eng 2018;330:522-46.
   67   68   69   70   71   72   73   74   75   76   77