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G Haïat

Showing results (1-10 of 12) with videos related to

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Biomechanics and Modeling in Mechanobiology|May 22, 2010
Independent scattering model and velocity dispersion in trabecular bone: comparison with a multiple scattering modelG Haïat, S Naili
The Journal of the Acoustical Society of America|March 19, 2008
Fast wave ultrasonic propagation in trabecular bone: numerical study of the influence of porosity and structural anisotropyG Haïat, F Padilla, F Peyrin, et al.
Medical Engineering & Physics|March 7, 2019
Resonant frequency analysis of dental implantsD Rittel, A Dorogoy, G Haïat, et al.
Journal of the Mechanical Behavior of Biomedical Materials|November 29, 2019
Modeling ultrasonic wave propagation in a dental implant - Bone systemA Dorogoy, G Haïat, K Shemtov-Yona, et al.
Ultrasonics|July 25, 2006
Numerical simulation of the dependence of quantitative ultrasonic parameters on trabecular bone microarchitecture and elastic constantsG Haïat, F Padilla, R Barkmann, et al.
The Journal of the Acoustical Society of America|February 12, 2009
Velocity dispersion in trabecular bone: influence of multiple scattering and of absorptionG Haïat, A Lhémery, F Renaud, et al.
Ultrasound in Medicine & Biology|June 24, 2005
In vitro speed of sound measurement at intact human femur specimensG Haïat, F Padilla, R Barkmann, et al.
Calcified Tissue International|September 10, 2005
Optimal prediction of bone mineral density with ultrasonic measurements in excised human femurG Haïat, F Padilla, R Barkmann, et al.
Bone|January 17, 2012
Anatomical distribution of the degree of mineralization of bone tissue in human femoral neck: impact on biomechanical propertiesV Sansalone, V Bousson, S Naili, et al.
Journal of Biomechanics|August 4, 2009
Relationship between ultrasonic parameters and apparent trabecular bone elastic modulus: a numerical approachG Haïat, F Padilla, M Svrcekova, et al.
Pageof 2

Showing results (1-10 of 12) with videos related to

Sort By:
Pageof 2
Biomechanics and Modeling in Mechanobiology|May 22, 2010
Independent scattering model and velocity dispersion in trabecular bone: comparison with a multiple scattering modelG Haïat, S Naili
The Journal of the Acoustical Society of America|March 19, 2008
Fast wave ultrasonic propagation in trabecular bone: numerical study of the influence of porosity and structural anisotropyG Haïat, F Padilla, F Peyrin, et al.
Medical Engineering & Physics|March 7, 2019
Resonant frequency analysis of dental implantsD Rittel, A Dorogoy, G Haïat, et al.
Journal of the Mechanical Behavior of Biomedical Materials|November 29, 2019
Modeling ultrasonic wave propagation in a dental implant - Bone systemA Dorogoy, G Haïat, K Shemtov-Yona, et al.
Ultrasonics|July 25, 2006
Numerical simulation of the dependence of quantitative ultrasonic parameters on trabecular bone microarchitecture and elastic constantsG Haïat, F Padilla, R Barkmann, et al.
The Journal of the Acoustical Society of America|February 12, 2009
Velocity dispersion in trabecular bone: influence of multiple scattering and of absorptionG Haïat, A Lhémery, F Renaud, et al.
Ultrasound in Medicine & Biology|June 24, 2005
In vitro speed of sound measurement at intact human femur specimensG Haïat, F Padilla, R Barkmann, et al.
Calcified Tissue International|September 10, 2005
Optimal prediction of bone mineral density with ultrasonic measurements in excised human femurG Haïat, F Padilla, R Barkmann, et al.
Bone|January 17, 2012
Anatomical distribution of the degree of mineralization of bone tissue in human femoral neck: impact on biomechanical propertiesV Sansalone, V Bousson, S Naili, et al.
Journal of Biomechanics|August 4, 2009
Relationship between ultrasonic parameters and apparent trabecular bone elastic modulus: a numerical approachG Haïat, F Padilla, M Svrcekova, et al.
Pageof 2