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Volumn 27, Issue 4, 2011, Pages 461-475

Multiscale prediction of crack density and crack length accumulation in trabecular bone based on neural networks and finite element simulation

(1)  Hambli, Ridha a  

a MMH   (France)

Author keywords

Finite element; Microcracks; Multiscale; Neural network; Trabecular bone

Indexed keywords

APPLIED STRESS; ARTIFICIAL NEURAL NETWORK; CRACK DENSITY; CRACK LENGTH; CYCLIC LOADINGS; DIGITAL IMAGE; FINITE ELEMENT; FINITE ELEMENT ANALYSIS; FINITE ELEMENT CALCULATIONS; FINITE ELEMENT CODES; FINITE ELEMENT SIMULATIONS; INPUT DATAS; MACROSCOPIC LEVELS; MACROSCOPIC SCALE; MESOSCALE SIMULATION; MESOSCOPICS; MULTISCALE; MULTISCALE ALGORITHMS; MULTISCALES; OUTPUT DATA; REPRESENTATIVE VOLUME ELEMENTS; STRESS ORIENTATIONS; TRABECULAR BONES; TRAINED NEURAL NETWORKS;

EID: 79953059230     PISSN: 20407939     EISSN: 20407947     Source Type: Journal    
DOI: 10.1002/cnm.1413     Document Type: Article
Times cited : (36)

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