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Nanotechnology|July 29, 2011
Experimental validation of atomic force microscopy-based cell elasticity measurementsAndrew R Harris, G T CharrasJournal of Biomechanics|February 1, 2000
Improving the local solution accuracy of large-scale digital image-based finite element analysesG T Charras, R E GuldbergSeminars in Cell & Developmental Biology|April 9, 2008
Implications of a poroelastic cytoplasm for the dynamics of animal cell shapeT J Mitchison, G T Charras, L MahadevanUltramicroscopy|February 24, 2001
Atomic force microscopy can be used to mechanically stimulate osteoblasts and evaluate cellular strain distributionsG T Charras, P P Lehenkari, M A HortonJournal of Biomechanical Engineering|January 11, 2002
A microstructural finite element simulation of mechanically induced bone formationJ T Koontz, G T Charras, R E GuldbergJournal of Biomechanical Engineering|July 21, 1999
The accuracy of digital image-based finite element modelsR E Guldberg, S J Hollister, G T CharrasUltramicroscopy|March 31, 2000
Adapting atomic force microscopy for cell biologyP P Lehenkari, G T Charras, A Nykänen, et al.Expert Reviews in Molecular Medicine|October 31, 2003
New technologies in scanning probe microscopy for studying molecular interactions in cellsP P Lehenkari, G T Charras, S A Nesbitt, et al.Wiley Interdisciplinary Reviews. Systems Biology and Medicine|October 2, 2014
Cell mechanics: principles, practices, and prospectsEmad Moeendarbary, Andrew R HarrisPageof 4