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Methodsx
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November 6, 2019
Improvements to mechanical response tissue analysis
Lyn Bowman, Anne B Loucks
Current Osteoporosis Reports
|
February 24, 2020
In Vivo Assessment of Cortical Bone Fragility
Lyn Bowman, Anne B Loucks
The American Journal of Clinical Nutrition
|
October 9, 2007
Validation of energy intake during calorie restriction with the doubly labeled water method and changes in body composition
Lyn Bowman, Anne B Loucks
Current Osteoporosis Reports
|
June 30, 2017
Response to "Clinical Evaluation of Bone Strength and Fracture Risk"
Anne B Loucks, Brian C Clark, Lyn Bowman
Journal of Biomechanics
|
September 29, 2014
Accuracy and reproducibility of bending stiffness measurements by mechanical response tissue analysis in artificial human ulnas
Patricia A Arnold, Emily R Ellerbrock, Lyn Bowman, et al.
Bone
|
November 30, 2018
A new noninvasive mechanical bending test accurately predicts ulna bending strength in cadaveric human arms
Lyn Bowman, Emily R Ellerbrock, Gabrielle C Hausfeld, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 6) with videos related to
Sort By:
Page
of 1
Methodsx
|
November 6, 2019
Improvements to mechanical response tissue analysis
Lyn Bowman, Anne B Loucks
Current Osteoporosis Reports
|
February 24, 2020
In Vivo Assessment of Cortical Bone Fragility
Lyn Bowman, Anne B Loucks
The American Journal of Clinical Nutrition
|
October 9, 2007
Validation of energy intake during calorie restriction with the doubly labeled water method and changes in body composition
Lyn Bowman, Anne B Loucks
Current Osteoporosis Reports
|
June 30, 2017
Response to "Clinical Evaluation of Bone Strength and Fracture Risk"
Anne B Loucks, Brian C Clark, Lyn Bowman
Journal of Biomechanics
|
September 29, 2014
Accuracy and reproducibility of bending stiffness measurements by mechanical response tissue analysis in artificial human ulnas
Patricia A Arnold, Emily R Ellerbrock, Lyn Bowman, et al.
Bone
|
November 30, 2018
A new noninvasive mechanical bending test accurately predicts ulna bending strength in cadaveric human arms
Lyn Bowman, Emily R Ellerbrock, Gabrielle C Hausfeld, et al.
Page
of 1