Showing results (1-10 of 19) with videos related to
Sort By:
Pageof 2
European Cells & Materials|October 17, 2003
A combined atomic force microscopy and nanoindentation technique to investigate the elastic properties of bone structural unitsS Hengsberger, A Kulik, P ZyssetBone|January 25, 2012
Microindentation can discriminate between damaged and intact human bone tissueE Dall'Ara, R Schmidt, P ZyssetMedical Physics|July 23, 2011
A calibration methodology of QCT BMD for human vertebral body with registered micro-CT imagesE Dall'Ara, P Varga, D Pahr, et al.European Cells & Materials|January 30, 2018
The thermal conductivity of cortical and cancellous boneA Feldmann, P Wili, G Maquer, et al.Osteoporosis International : a Journal Established As Result of Cooperation Between the European Foundation for Osteoporosis and the National Osteoporosis Foundation of the USA|February 24, 2011
QCT-based finite element models predict human vertebral strength in vitro significantly better than simulated DEXAE Dall'Ara, D Pahr, P Varga, et al.Current Osteoporosis Reports|May 29, 2013
Advanced CT based in vivo methods for the assessment of bone density, structure, and strengthK Engelke, C Libanati, T Fuerst, et al.International Journal for Numerical Methods in Biomedical Engineering|July 31, 2015
Experimental validation of a nonlinear μFE model based on cohesive-frictional plasticity for trabecular boneJ Schwiedrzik, T Gross, M Bina, et al.Bone|September 19, 2012
A nonlinear QCT-based finite element model validation study for the human femur tested in two configurations in vitroE Dall'Ara, B Luisier, R Schmidt, et al.Osteoporosis International : a Journal Established As Result of Cooperation Between the European Foundation for Osteoporosis and the National Osteoporosis Foundation of the USA|May 27, 2020
Reference values and clinical predictors of bone strength for HR-pQCT-based distal radius and tibia strength assessments in women and menA K Stuck, D Schenk, P Zysset, et al.Medical Engineering & Physics|May 21, 2013
DXA predictions of human femoral mechanical properties depend on the load configurationE Dall'Ara, B Luisier, R Schmidt, et al.Pageof 2