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Short Communication

Effects of using the unloaded configuration in predicting the in vivo diastolic properties of the heart

, , , , , , & show all
Pages 1714-1720 | Received 22 Jul 2015, Accepted 23 Apr 2016, Published online: 06 May 2016

References

  • Alastrué V, Garía A, Pena E, Rodríguez J, Martinez M, Doblaré M. 2010. Numerical framework for patient-specific computational modelling of vascular tissue. Int J Numer Methods Biomed Eng. 26:35–51.10.1002/cnm.v26:1
  • Augenstein KF, Cowan BR, LeGrice IJ, Young AA. 2006. Estimation of cardiac hyperelastic material properties from MRI tissue tagging and diffusion tensor imaging, in Medical Image Computing and Computer-Assisted Intervention – MICCAI 2006. Springer; p. 628–635.
  • Bols J, Degroote J, Trachet B, Verhegghe B, Segers P, Vierendeels J. 2013. A computational method to assess the in vivo stresses and unloaded configuration of patient-specific blood vessels. J Comput Appl Math. 246:10–17.10.1016/j.cam.2012.10.034
  • Dokos S, Smaill BH, Young AA, LeGrice IJ. 2002. Shear properties of passive ventricular myocardium. Am J Physiol Heart Circ Physiol. 283:H2650–H2659.10.1152/ajpheart.00111.2002
  • Guccione JM, McCulloch AD, Waldman LK. 1991. Passive material properties of intact ventricular myocardium determined from a cylindrical model. J Biomech Eng. 113:42–55.10.1115/1.2894084
  • Helm P, Beg MF, Miller MI, Winslow RL. 2005. Measuring and mapping cardiac fiber and laminar architecture using diffusion tensor MR imaging. Ann NY Acad Sci. 1047:296–307.10.1196/annals.1341.026
  • Holzapfel GA, Ogden RW. 2009. Constitutive modelling of passive myocardium: a structurally based framework for material characterization. Philos Trans A Math Phys Eng Sci. 367:3445–3475.10.1098/rsta.2009.0091
  • Klotz S, Hay I, Dickstein ML, Yi G-H, Wang J, Maurer MS, Kass DA, Burkhoff D. 2006. Single-beat estimation of end-diastolic pressure–volume relationship: a novel method with potential for noninvasive application. Am J Physiol Heart and Circ Physiol. 291:H403–H412.10.1152/ajpheart.01240.2005
  • Krishnamurthy A, Villongco CT, Chuang J, Frank LR, Nigam V, Belezzuoli E, Stark P, Krummen DE, Narayan S, Omens JH, McCulloch AD, Kerckhoffs RC. 2013. Patient-specific models of cardiac biomechanics. J Comput Phys. 244:4–21.10.1016/j.jcp.2012.09.015
  • Lee W-N, Pernot M, Couade M, Messas E, Bruneval P, Bel A, Hagege AA, Fink M, Tanter M. 2012. Mapping myocardial fiber orientation using echocardiography-based shear wave imaging. IEEE Trans Med Imaging. 31:554–562.
  • Nikou A, Dorsey SM, McGarvey JR, Gorman JH, Burdick JA, Pilla JJ, Gorman RC, Wenk JF. 2016. Computational Modeling of Healthy Myocardium in Diastole. Ann Biomed Eng. 44:980–992.
  • Okamoto R, Moulton M, Peterson S, Li D, Pasque M, Guccione J. 2000. Epicardial suction: a new approach to mechanical testing of the passive ventricular wall. J Biomech Eng. 122:479–487.
  • Rajagopal V, Chung JH, Bullivant D, Nielsen PM, Nash MP. 2007. Determining the finite elasticity reference state from a loaded configuration. Int J Numer Methods Eng. 72:1434–1451.10.1002/(ISSN)1097-0207
  • Sermesant M, Razavi R. 2010. Personalized computational models of the heart for cardiac resynchronization therapy. In: Kerckhoffs RC, Patient-specific modeling of the cardiovascular system. New York: Springer; p. 167–182.
  • Walker JC,Ratcliffe MB, Zhang P, Wallace AW, Fata B, Hsu EW, Saloner D, Guccione JM. 2005. MRI-based finite-element analysis of left ventricular aneurysm. Am J Physiol Heart Circ Physiol. 289:H692–H700.10.1152/ajpheart.01226.2004
  • Wang H, Luo X, Gao H, Ogden R, Griffith B, Berry C, Wang T. 2014. A modified Holzapfel–Ogden law for a residually stressed finite strain model of the human left ventricle in diastole. Biomech Model Mechanobiol. 13:99–113.10.1007/s10237-013-0488-x
  • Wenk JF, Sun K, Zhang Z, Soleimani M, Ge L, Saloner D, Wallace AW, Ratcliffe MB, Guccione JM. 2011. Regional left ventricular myocardial contractility and stress in a finite element model of posterobasal myocardial infarction. J Biomech Eng. 133:044501.10.1115/1.4003438
  • Wenk JF, Klepach D, Lee LC, Zhang Z, Ge L, Tseng EE, Martin A, Kozerke S, Gorman III JH, Gorman RC. 2012. First evidence of depressed contractility in the border zone of a human myocardial infarction. Ann Thorac Surg. 93:1188–1193.10.1016/j.athoracsur.2011.12.066
  • Xi J, Lamata P, Niederer S, Land S, Shi W, Zhuang X, Ourselin S, Duckett SG, Shetty AK, Rinaldi CA. 2013. The estimation of patient-specific cardiac diastolic functions from clinical measurements. Med Image Anal. 17:133–146.10.1016/j.media.2012.08.001

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