1.
Loading of the knee joint during activities of daily living measured in vivo in five subjects
by Kutzner, I
Journal of biomechanics, 2010, Vol.43 (11), p.2164-2173

2.
Receptor Activator of Nuclear Factor κB Ligand and Osteoprotegerin Regulation of Bone Remodeling in Health and Disease
by Kearns, Ann E
Endocrine reviews, 2008, Vol.29 (2), p.155-192

3.
Fluid and Solute Transport in Bone : Flow-Induced Mechanotransduction
by FRITTON, Susannah P
Annual review of fluid mechanics, 2009, Vol.41 (1), p.347-374

4.
Low mechanical signals strengthen long bones
by RUBIN, Clinton
Nature (London), 2001, Vol.412 (6847), p.603-604

5.
Sphingosine-1-phosphate mobilizes osteoclast precursors and regulates bone homeostasis
by Ishii, Masaru
Nature, 2009, Vol.458 (7237), p.524-528

6.
Effects of idealized joint geometry on finite element predictions of cartilage contact stresses in the hip
by Anderson, Andrew E
Journal of biomechanics, 2010, Vol.43 (7), p.1351-1357

7.
Effects of denosumab on bone mineral density and bone turnover in patients with rheumatoid arthritis receiving concurrent glucocorticoids or bisphosphonates
by Dore, Robin K
Annals of the rheumatic diseases, 2010, Vol.69 (5), p.872-875

8.
Bone Morphogenetic Proteins, Their Antagonists, and the Skeleton
by Canalis, Ernesto
Endocrine reviews, 2003, Vol.24 (2), p.218-235

9.
Systemic and Local Regulation of the Growth Plate
by van der Eerden, B. C. J
Endocrine reviews, 2003, Vol.24 (6), p.782-801

10.
Conditional Deletion of Insulin-Like Growth Factor-I in Collagen Type 1α2-Expressing Cells Results in Postnatal Lethality and a Dramatic Reduction in Bone Accretion
by Govoni, Kristen E
Endocrinology (Philadelphia), 2007, Vol.148 (12), p.5706-5715

12.
Assessment of a greater trochanter-based method of locating the hip joint center
by Weinhandl, Joshua T
Journal of biomechanics, 2010, Vol.43 (13), p.2633-2636

13.
Shear strength behavior of human trabecular bone
by Sanyal, Arnav
Journal of biomechanics, 2012, Vol.45 (15), p.2513-2519

14.
Costimulatory signals mediated by the ITAM motif cooperate with RANKL for bone homeostasis
by Takayanagi, Hiroshi
Nature, 2004, Vol.428 (6984), p.758-763

15.
Geometry strongly influences the response of numerical models of the lumbar spine—A probabilistic finite element analysis
by Niemeyer, Frank
Journal of biomechanics, 2012, Vol.45 (8), p.1414-1423

16.
Bone recognition mechanism of porcine osteocalcin from crystal structure
by Yang, Daniel S. C
Nature, 2003, Vol.425 (6961), p.977-980

17.
ASDAS, BASDAI and different treatment responses and their relation to biomarkers of inflammation, cartilage and bone turnover in patients with axial spondyloarthritis treated with...
by Pedersen, Susanne Juhl
Annals of the rheumatic diseases, 2011, Vol.70 (8), p.1375-1381

18.
Fluid shear stress in trabecular bone marrow due to low-magnitude high-frequency vibration
by Coughlin, Thomas R
Journal of biomechanics, 2012, Vol.45 (13), p.2222-2229

19.
Accuracy of finite element predictions in sideways load configurations for the proximal human femur
by Grassi, L
Journal of biomechanics, 2011, Vol.45 (2), p.394-399

20.
Using digital image correlation to determine bone surface strains during loading and after adaptation of the mouse tibia
by Sztefek, Pavel
Journal of biomechanics, 2009, Vol.43 (4), p.599-605
