Transversely isotropic biological, soft tissue must be modelled using both anisotropic invariants JG Murphy European Journal of Mechanics-A/Solids 42, 90-96, 2013 | 134 | 2013 |
Simple shear is not so simple M Destrade, JG Murphy, G Saccomandi International Journal of Non-Linear Mechanics 47 (2), 210-214, 2012 | 131 | 2012 |
Extreme softness of brain matter in simple shear M Destrade, MD Gilchrist, JG Murphy, B Rashid, G Saccomandi International Journal of Non-Linear Mechanics 75, 54-58, 2015 | 102 | 2015 |
Region and species dependent mechanical properties of adolescent and young adult brain tissue DB MacManus, B Pierrat, JG Murphy, MD Gilchrist Scientific reports 7 (1), 13729, 2017 | 92 | 2017 |
At least three invariants are necessary to model the mechanical response of incompressible, transversely isotropic materials M Destrade, BM Donald, JG Murphy, G Saccomandi Computational Mechanics 52, 959-969, 2013 | 73 | 2013 |
Simple shearing of incompressible and slightly compressible isotropic nonlinearly elastic materials CO Horgan, JG Murphy Journal of Elasticity 98, 205-221, 2010 | 68 | 2010 |
Onset of nonlinearity in the elastic bending of blocks M Destrade, MD Gilchrist, JG Murphy | 67 | 2010 |
Simple shearing of soft biological tissues CO Horgan, JG Murphy Proceedings of the Royal Society A: Mathematical, Physical and Engineering …, 2011 | 64 | 2011 |
On the volumetric part of strain-energy functions used in the constitutive modeling of slightly compressible solid rubbers CO Horgan, JG Murphy International Journal of Solids and Structures 46 (16), 3078-3085, 2009 | 64 | 2009 |
Mechanical characterization of the P56 mouse brain under large-deformation dynamic indentation DB MacManus, B Pierrat, JG Murphy, MD Gilchrist Scientific reports 6 (1), 21569, 2016 | 56 | 2016 |
Deficiencies in numerical models of anisotropic nonlinearly elastic materials A Ní Annaidh, M Destrade, MD Gilchrist, JG Murphy Biomechanics and modeling in mechanobiology 12, 781-791, 2013 | 56 | 2013 |
Bimodular rubber buckles early in bending M Destrade, MD Gilchrist, JA Motherway, JG Murphy Mechanics of Materials 42 (4), 469-476, 2010 | 55 | 2010 |
A viscoelastic analysis of the P56 mouse brain under large-deformation dynamic indentation DB MacManus, B Pierrat, JG Murphy, MD Gilchrist Acta Biomaterialia 48, 309-318, 2017 | 54 | 2017 |
Poynting and reverse Poynting effects in soft materials CO Horgan, JG Murphy Soft matter 13 (28), 4916-4923, 2017 | 53 | 2017 |
Compression tests and constitutive models for the slight compressibility of elastic rubber-like materials CO Horgan, JG Murphy International Journal of Engineering Science 47 (11-12), 1232-1239, 2009 | 53 | 2009 |
Dominant negative Poynting effect in simple shearing of soft tissues M Destrade, CO Horgan, JG Murphy Journal of Engineering Mathematics 95 (1), 87-98, 2015 | 52 | 2015 |
Protection of cortex by overlying meninges tissue during dynamic indentation of the adolescent brain DB MacManus, B Pierrat, JG Murphy, MD Gilchrist Acta biomaterialia 57, 384-394, 2017 | 51 | 2017 |
Mechanical characterisation of brain tissue up to 35% strain at 1, 10, and 100/s using a custom-built micro-indentation apparatus DB MacManus, JG Murphy, MD Gilchrist Journal of the mechanical behavior of biomedical materials 87, 256-266, 2018 | 49 | 2018 |
Limiting chain extensibility constitutive models of Valanis–Landel type CO Horgan, JG Murphy Journal of Elasticity 86, 101-111, 2007 | 48 | 2007 |
Evolution of anisotropy in soft tissue JG Murphy Proceedings of the Royal Society A: Mathematical, Physical and Engineering …, 2014 | 47 | 2014 |