Rank |
Title |
Journal |
Year |
PubWeight™‹?› |
1
|
Trabecular bone modulus-density relationships depend on anatomic site.
|
J Biomech
|
2003
|
2.59
|
2
|
Finite element models predict in vitro vertebral body compressive strength better than quantitative computed tomography.
|
Bone
|
2003
|
2.27
|
3
|
Comparison of the elastic and yield properties of human femoral trabecular and cortical bone tissue.
|
J Biomech
|
2004
|
2.06
|
4
|
Structural determinants of vertebral fracture risk.
|
J Bone Miner Res
|
2007
|
1.97
|
5
|
Complete volumetric decomposition of individual trabecular plates and rods and its morphological correlations with anisotropic elastic moduli in human trabecular bone.
|
J Bone Miner Res
|
2008
|
1.89
|
6
|
Cortical and trabecular load sharing in the human vertebral body.
|
J Bone Miner Res
|
2005
|
1.88
|
7
|
Finite element analysis of the proximal femur and hip fracture risk in older men.
|
J Bone Miner Res
|
2009
|
1.73
|
8
|
Influence of bone volume fraction and architecture on computed large-deformation failure mechanisms in human trabecular bone.
|
Bone
|
2006
|
1.57
|
9
|
Trabecular microfracture and the influence of pyridinium and non-enzymatic glycation-mediated collagen cross-links.
|
Bone
|
2005
|
1.53
|
10
|
The Testosterone Trials: Seven coordinated trials of testosterone treatment in elderly men.
|
Clin Trials
|
2014
|
1.46
|
11
|
Quantitative computed tomography estimates of the mechanical properties of human vertebral trabecular bone.
|
J Orthop Res
|
2002
|
1.38
|
12
|
Relation of vertebral deformities to bone density, structure, and strength.
|
J Bone Miner Res
|
2010
|
1.32
|
13
|
Prediction of new clinical vertebral fractures in elderly men using finite element analysis of CT scans.
|
J Bone Miner Res
|
2012
|
1.28
|
14
|
Micromechanical analyses of vertebral trabecular bone based on individual trabeculae segmentation of plates and rods.
|
J Biomech
|
2008
|
1.25
|
15
|
Bone density, turnover, and estimated strength in postmenopausal women treated with odanacatib: a randomized trial.
|
J Clin Endocrinol Metab
|
2013
|
1.21
|
16
|
Assessment of incident spine and hip fractures in women and men using finite element analysis of CT scans.
|
J Bone Miner Res
|
2014
|
1.17
|
17
|
Evolution of the biomechanical material properties of the femur.
|
Anat Rec
|
2002
|
1.15
|
18
|
Hip and spine strength effects of adding versus switching to teriparatide in postmenopausal women with osteoporosis treated with prior alendronate or raloxifene.
|
J Bone Miner Res
|
2013
|
1.14
|
19
|
Evaluation of teriparatide treatment in adults with osteogenesis imperfecta.
|
J Clin Invest
|
2014
|
1.13
|
20
|
A biomechanical analysis of the effects of resorption cavities on cancellous bone strength.
|
J Bone Miner Res
|
2006
|
1.11
|
21
|
Trabecular bone strength predictions using finite element analysis of micro-scale images at limited spatial resolution.
|
Bone
|
2008
|
1.11
|
22
|
Quantitative computed tomography-based finite element models of the human lumbar vertebral body: effect of element size on stiffness, damage, and fracture strength predictions.
|
J Biomech Eng
|
2003
|
1.10
|
23
|
Contribution of inter-site variations in architecture to trabecular bone apparent yield strains.
|
J Biomech
|
2004
|
1.09
|
24
|
Role of trabecular microarchitecture in whole-vertebral body biomechanical behavior.
|
J Bone Miner Res
|
2009
|
1.08
|
25
|
Association of hip strength estimates by finite-element analysis with fractures in women and men.
|
J Bone Miner Res
|
2011
|
1.07
|
26
|
Biomechanical effects of intraspecimen variations in tissue modulus for trabecular bone.
|
J Biomech
|
2002
|
1.06
|
27
|
Locations of bone tissue at high risk of initial failure during compressive loading of the human vertebral body.
|
Bone
|
2007
|
1.06
|
28
|
Mechanisms of uniformity of yield strains for trabecular bone.
|
J Biomech
|
2004
|
1.04
|
29
|
Once-monthly oral ibandronate improves biomechanical determinants of bone strength in women with postmenopausal osteoporosis.
|
J Clin Endocrinol Metab
|
2008
|
1.03
|
30
|
Relationship between axial and bending behaviors of the human thoracolumbar vertebra.
|
Spine (Phila Pa 1976)
|
2004
|
1.03
|
31
|
The influence of boundary conditions and loading mode on high-resolution finite element-computed trabecular tissue properties.
|
Bone
|
2008
|
1.02
|
32
|
The effects of side-artifacts on the elastic modulus of trabecular bone.
|
J Biomech
|
2006
|
1.01
|
33
|
Effects of white, grey, and pia mater properties on tissue level stresses and strains in the compressed spinal cord.
|
J Neurotrauma
|
2009
|
1.01
|
34
|
Influence of vertical trabeculae on the compressive strength of the human vertebra.
|
J Bone Miner Res
|
2011
|
1.01
|
35
|
Mechanical contributions of the cortical and trabecular compartments contribute to differences in age-related changes in vertebral body strength in men and women assessed by QCT-based finite element analysis.
|
J Bone Miner Res
|
2011
|
0.99
|
36
|
Damage in trabecular bone at small strains.
|
Eur J Morphol
|
2005
|
0.99
|
37
|
Shear strength behavior of human trabecular bone.
|
J Biomech
|
2012
|
0.95
|
38
|
Biaxial failure behavior of bovine tibial trabecular bone.
|
J Biomech Eng
|
2002
|
0.95
|
39
|
Side-artifact errors in yield strength and elastic modulus for human trabecular bone and their dependence on bone volume fraction and anatomic site.
|
J Biomech
|
2007
|
0.95
|
40
|
Mechanisms of initial endplate failure in the human vertebral body.
|
J Biomech
|
2010
|
0.94
|
41
|
Vertebral strength changes in rheumatoid arthritis patients treated with alendronate, as assessed by finite element analysis of clinical computed tomography scans: a prospective randomized clinical trial.
|
Arthritis Rheum
|
2008
|
0.93
|
42
|
Microstructural failure mechanisms in the human proximal femur for sideways fall loading.
|
J Bone Miner Res
|
2014
|
0.93
|
43
|
Adaptation of cellular mechanical behavior to mechanical loading for osteoblastic cells.
|
J Biomech
|
2006
|
0.93
|
44
|
Finite element modeling of the human thoracolumbar spine.
|
Spine (Phila Pa 1976)
|
2003
|
0.92
|
45
|
Development of residual strains in human vertebral trabecular bone after prolonged static and cyclic loading at low load levels.
|
J Biomech
|
2005
|
0.92
|
46
|
The modified super-ellipsoid yield criterion for human trabecular bone.
|
J Biomech Eng
|
2004
|
0.92
|
47
|
Heterogeneity of yield strain in low-density versus high-density human trabecular bone.
|
J Biomech
|
2009
|
0.90
|
48
|
Theoretical bounds for the influence of tissue-level ductility on the apparent-level strength of human trabecular bone.
|
J Biomech
|
2013
|
0.89
|
49
|
Contribution of the intra-specimen variations in tissue mineralization to PTH- and raloxifene-induced changes in stiffness of rat vertebrae.
|
Bone
|
2009
|
0.88
|
50
|
Similarity in the fatigue behavior of trabecular bone across site and species.
|
J Biomech
|
2004
|
0.88
|
51
|
The effects of tensile-compressive loading mode and microarchitecture on microdamage in human vertebral cancellous bone.
|
J Biomech
|
2014
|
0.87
|
52
|
Sensitivity of multiple damage parameters to compressive overload in cortical bone.
|
J Biomech Eng
|
2005
|
0.86
|
53
|
The effects of morphology, confluency, and phenotype on whole-cell mechanical behavior.
|
Ann Biomed Eng
|
2006
|
0.85
|
54
|
A computational assessment of the independent contribution of changes in canine trabecular bone volume fraction and microarchitecture to increased bone strength with suppression of bone turnover.
|
J Biomech
|
2007
|
0.85
|
55
|
Mechanical loading by fluid shear is sufficient to alter the cytoskeletal composition of osteoblastic cells.
|
Am J Physiol Cell Physiol
|
2008
|
0.84
|
56
|
Measurement and characterization of whole-cell mechanical behavior.
|
Ann Biomed Eng
|
2006
|
0.84
|
57
|
Femoral volumetric bone density, geometry, and strength in relation to 25-hydroxy vitamin D in older men.
|
J Bone Miner Res
|
2015
|
0.84
|
58
|
Vertebral fragility and structural redundancy.
|
J Bone Miner Res
|
2012
|
0.82
|
59
|
Multi-scale modeling of the human vertebral body: comparison of micro-CT based high-resolution and continuum-level models.
|
Pac Symp Biocomput
|
2009
|
0.81
|
60
|
Sensitivity of vertebral compressive strength to endplate loading distribution.
|
J Biomech Eng
|
2006
|
0.81
|
61
|
Biomechanical evaluation of a double-threaded pedicle screw in elderly vertebrae.
|
J Spinal Disord Tech
|
2002
|
0.80
|
62
|
Trabecular architecture and vertebral fragility in osteoporosis.
|
Curr Osteoporos Rep
|
2012
|
0.79
|
63
|
Compression behavior of porcine spinal cord white matter.
|
J Biomech
|
2011
|
0.78
|
64
|
Biaxial normal strength behavior in the axial-transverse plane for human trabecular bone--effects of bone volume fraction, microarchitecture, and anisotropy.
|
J Biomech Eng
|
2013
|
0.77
|
65
|
Micromechanics of the human vertebral body for forward flexion.
|
J Biomech
|
2012
|
0.77
|
66
|
Prevalence of Poor Bone Quality in Women Undergoing Spinal Fusion Using Biomechanical-CT Analysis.
|
Spine (Phila Pa 1976)
|
2016
|
0.77
|
67
|
Effects of in vitro bone formation on the mechanical properties of a trabeculated hydroxyapatite bone substitute.
|
J Biomed Mater Res A
|
2006
|
0.76
|
68
|
Over-expression of alpha-actinin with a GFP fusion protein is sufficient to increase whole-cell stiffness in human osteoblasts.
|
Ann Biomed Eng
|
2008
|
0.76
|
69
|
Biomechanical effects of simulated resorption cavities in cancellous bone across a wide range of bone volume fractions.
|
J Bone Miner Res
|
2012
|
0.76
|
70
|
Load transfer mechanisms in cylindrical interbody cage constructs.
|
Spine (Phila Pa 1976)
|
2002
|
0.76
|
71
|
The quartic piecewise-linear criterion for the multiaxial yield behavior of human trabecular bone.
|
J Biomech Eng
|
2015
|
0.75
|
72
|
On Stölken and Kinney (bone 2003;33(4):494-504).
|
Bone
|
2004
|
0.75
|
73
|
Effects of suppression of bone turnover on cortical and trabecular load sharing in the canine vertebral body.
|
J Biomech
|
2009
|
0.75
|
74
|
Effect of intraspecimen spatial variation in tissue mineral density on the apparent stiffness of trabecular bone.
|
J Biomech Eng
|
2015
|
0.75
|
75
|
The effect of flash freezing on variability in spinal cord compression behavior.
|
J Biomech Eng
|
2009
|
0.75
|