Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Makiyama , A. M.
Vajjhala , S.
and
Gibson, L. J.
2002.
Analysis of Crack Growth in a 3D Voronoi Structure: A Model for Fatigue in Low Density Trabecular Bone .
Journal of Biomechanical Engineering,
Vol. 124,
Issue. 5,
p.
512.
Fazzalari, N.L
Kuliwaba, J.S
and
Forwood, M.R
2002.
Cancellous bone microdamage in the proximal femur: influence of age and osteoarthritis on damage morphology and regional distribution.
Bone,
Vol. 31,
Issue. 6,
p.
697.
Lee, T. C.
Staines, A.
and
Taylor, D.
2002.
Bone adaptation to load: microdamage as a stimulus for bone remodelling.
Journal of Anatomy,
Vol. 201,
Issue. 6,
p.
437.
Martin, R.B
2002.
Is all cortical bone remodeling initiated by microdamage?.
Bone,
Vol. 30,
Issue. 1,
p.
8.
Lee, T. C.
Mohsin, S.
Taylor, D.
Parkesh, R.
Gunnlaugsson, T.
O'Brien, F. J.
Giehl, M.
and
Gowin, W.
2003.
Detecting microdamage in bone.
Journal of Anatomy,
Vol. 203,
Issue. 2,
p.
161.
Taylor, D.
2003.
Comprehensive Structural Integrity.
p.
35.
O’Brien, Fergal J.
Taylor, David
and
Lee, T.Clive
2003.
Microcrack accumulation at different intervals during fatigue testing of compact bone.
Journal of Biomechanics,
Vol. 36,
Issue. 7,
p.
973.
Yeni, Yener N.
and
Fyhrie, David P.
2003.
A rate-dependent microcrack-bridging model that can explain the strain rate dependency of cortical bone apparent yield strength.
Journal of Biomechanics,
Vol. 36,
Issue. 9,
p.
1343.
Kotha, S.P.
and
Guzelsu, N.
2003.
Tensile damage and its effects on cortical bone.
Journal of Biomechanics,
Vol. 36,
Issue. 11,
p.
1683.
Taylor, D.
Hazenberg, J.G.
and
Lee, T.C.
2003.
The cellular transducer in damage-stimulated bone remodelling: a theoretical investigation using fracture mechanics.
Journal of Theoretical Biology,
Vol. 225,
Issue. 1,
p.
65.
Boyde, Alan
2003.
The real response of bone to exercise.
Journal of Anatomy,
Vol. 203,
Issue. 2,
p.
173.
O'Brien, Fergal J.
Taylor, David
and
Lee, T. Clive
2005.
The effect of bone microstructure on the initiation and growth of microcracks.
Journal of Orthopaedic Research,
Vol. 23,
Issue. 2,
p.
475.
McNamara, Laoise
and
Prendergast, Patrick
2005.
Perforation of cancellous bone trabeculae by damage-stimulated remodelling at resorption pits: A computational analysis.
European Journal of Morphology,
Vol. 42,
Issue. 1-2,
p.
99.
O’Brien, Fergal J.
Brennan, Orlaith
Kennedy, Oran D.
and
Lee, T. Clive
2005.
Microcracks in cortical bone: How do they affect bone biology?.
Current Osteoporosis Reports,
Vol. 3,
Issue. 2,
p.
39.
KH, Zarrinkalam
JS, Kuliwaba
RB, Martin
MAB, Wallwork
and
NL, Fazzalari
2005.
New insights into the propagation of fatigue damage in cortical bone using confocal microscopy and chelating fluorochromes.
European Journal of Morphology,
Vol. 42,
Issue. 1-2,
p.
81.
Nalla, R.K.
Kruzic, J.J.
Kinney, J.H.
and
Ritchie, R.O.
2005.
Aspects of in vitro fatigue in human cortical bone: time and cycle dependent crack growth.
Biomaterials,
Vol. 26,
Issue. 14,
p.
2183.
O'brien, Fergal
Hardiman, David
Hazenberg, Jan
Mercy, Matthew
Mohsin, Sahar
Taylor, David
and
Lee, T Clive
2005.
The behaviour of microcracks in compact bone.
European Journal of Morphology,
Vol. 42,
Issue. 1-2,
p.
71.
Nagaraja, Srinidhi
Couse, Tracey L.
and
Guldberg, Robert E.
2005.
Trabecular bone microdamage and microstructural stresses under uniaxial compression.
Journal of Biomechanics,
Vol. 38,
Issue. 4,
p.
707.
Jones, C.W.
Smolinski, D.
Keogh, A.
Kirk, T.B.
and
Zheng, M.H.
2005.
Confocal laser scanning microscopy in orthopaedic research.
Progress in Histochemistry and Cytochemistry,
Vol. 40,
Issue. 1,
p.
1.
Wasserman, Nicholas
Yerramshetty, Janardhan
and
Akkus, Ozan
2005.
Microcracks colocalize within highly mineralized regions of cortical bone tissue.
European Journal of Morphology,
Vol. 42,
Issue. 1-2,
p.
43.