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David P Fyhrie

Showing results (11-20 of 60) with videos related to

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The Anatomical Record. Part A, Discoveries in Molecular, Cellular, and Evolutionary Biology|January 4, 2005
Sexual dimorphism and age dependence of osteocyte lacunar density for human vertebral cancellous boneDeepak Vashishth, Gary J Gibson, David P Fyhrie
Biomedical Engineering Research|April 1, 2014
A Novel Method for Curvefitting the Stretched Exponential Function to Experimental DataRonald K June, John P Cunningham, David P Fyhrie
Bone|February 27, 2007
An application of bioinformatics and text mining to the discovery of novel genes related to bone biologyVarun K Gajendran, Jia-Ren Lin, David P Fyhrie
Scientific Reports|January 27, 2023
Training drives turnover rates in racehorse proximal sesamoid bonesSarah K Shaffer, Susan M Stover, David P Fyhrie
The Anatomical Record. Part A, Discoveries in Molecular, Cellular, and Evolutionary Biology|May 13, 2003
Histomorphometric assessment of Haversian canal and osteocyte lacunae in different-sized osteons in human ribShijing Qiu, David P Fyhrie, Saroj Palnitkar, et al.
Bone|March 8, 2012
Effects of mineral content on the fracture properties of equine cortical bone in double-notched beamsJordan McCormack, Susan M Stover, Jeffery C Gibeling, et al.
Journal of Biomedical Optics|September 4, 2009
Stress mapping of undamaged, strained, and failed regions of bone using Raman spectroscopyKathryn A Dooley, Jordan McCormack, David P Fyhrie, et al.
Bone|November 18, 2010
Damage initiation sites in osteoporotic and normal human cancellous boneMatthew A Soicher, Xiang Wang, Roger R Zauel, et al.
Bone|April 2, 2008
Cancellous bone lamellae strongly affect microcrack propagation and apparent mechanical properties: separation of patients with osteoporotic fracture from normal controls using a 2D nonlinear finite element method (biomechanical stereology)Xiang Wang, Roger R Zauel, D Sudhaker Rao, et al.
Annals of Biomedical Engineering|April 19, 2002
Prestress due to dimensional changes caused by demineralization: a potential mechanism for microcracking in boneYener N Yeni, Mitchell B Schaffler, Gary Gibson, et al.
Pageof 6

Showing results (11-20 of 60) with videos related to

Sort By:
Pageof 6
The Anatomical Record. Part A, Discoveries in Molecular, Cellular, and Evolutionary Biology|January 4, 2005
Sexual dimorphism and age dependence of osteocyte lacunar density for human vertebral cancellous boneDeepak Vashishth, Gary J Gibson, David P Fyhrie
Biomedical Engineering Research|April 1, 2014
A Novel Method for Curvefitting the Stretched Exponential Function to Experimental DataRonald K June, John P Cunningham, David P Fyhrie
Bone|February 27, 2007
An application of bioinformatics and text mining to the discovery of novel genes related to bone biologyVarun K Gajendran, Jia-Ren Lin, David P Fyhrie
Scientific Reports|January 27, 2023
Training drives turnover rates in racehorse proximal sesamoid bonesSarah K Shaffer, Susan M Stover, David P Fyhrie
The Anatomical Record. Part A, Discoveries in Molecular, Cellular, and Evolutionary Biology|May 13, 2003
Histomorphometric assessment of Haversian canal and osteocyte lacunae in different-sized osteons in human ribShijing Qiu, David P Fyhrie, Saroj Palnitkar, et al.
Bone|March 8, 2012
Effects of mineral content on the fracture properties of equine cortical bone in double-notched beamsJordan McCormack, Susan M Stover, Jeffery C Gibeling, et al.
Journal of Biomedical Optics|September 4, 2009
Stress mapping of undamaged, strained, and failed regions of bone using Raman spectroscopyKathryn A Dooley, Jordan McCormack, David P Fyhrie, et al.
Bone|November 18, 2010
Damage initiation sites in osteoporotic and normal human cancellous boneMatthew A Soicher, Xiang Wang, Roger R Zauel, et al.
Bone|April 2, 2008
Cancellous bone lamellae strongly affect microcrack propagation and apparent mechanical properties: separation of patients with osteoporotic fracture from normal controls using a 2D nonlinear finite element method (biomechanical stereology)Xiang Wang, Roger R Zauel, D Sudhaker Rao, et al.
Annals of Biomedical Engineering|April 19, 2002
Prestress due to dimensional changes caused by demineralization: a potential mechanism for microcracking in boneYener N Yeni, Mitchell B Schaffler, Gary Gibson, et al.
Pageof 6