A 3D damage model for trabecular bone based on fabric tensors

scientific article published in December 1996

A 3D damage model for trabecular bone based on fabric tensors is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1016/0021-9290(96)00087-5
P698PubMed publication ID8945653

P2093author name stringZysset PK
Curnier A
P433issue12
P304page(s)1549-1558
P577publication date1996-12-01
P1433published inJournal of BiomechanicsQ4862281
P1476titleA 3D damage model for trabecular bone based on fabric tensors
P478volume29

Reverse relations

cites work (P2860)
Q42645689A Novel 3D Microstructural Model for Trabecular Bone: II. The Relationship Between Fabric and the Yield Surface
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Q34742707Advanced CT based in vivo methods for the assessment of bone density, structure, and strength
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Q30369765Biomechanics and mechanobiology of trabecular bone: a review.
Q64946037Bone Mechanical Properties in Healthy and Diseased States.
Q30474433Constitutive relationship of tissue behavior with damage accumulation of human cortical bone
Q36390729Continuum theory of fibrous tissue damage mechanics using bond kinetics: application to cartilage tissue engineering
Q58775123Determinants of bone damage: An ex-vivo study on porcine vertebrae
Q41858859Effect of including damage at the tissue level in the nonlinear homogenisation of trabecular bone
Q51798694Effects of damage on the orthotropic material symmetry of bovine tibial trabecular bone.
Q37383988Effects of loading orientation on the morphology of the predicted yielded regions in trabecular bone.
Q37151666Finite element analysis for prediction of bone strength
Q30494296Hierarchy of Bone Microdamage at Multiple Length Scales
Q52232795Imposing thermodynamic restrictions on the elastic constant-fabric tensor relationship.
Q36922581In vivo microdamage is an indicator of susceptibility to initiation and propagation of microdamage in human femoral trabecular bone.
Q74256565Mechanical properties of cancellous bone in the human mandibular condyle are anisotropic
Q36152369Micromechanics of the human vertebral body for forward flexion.
Q36390723Modelling of bone fracture and strength at different length scales: a review
Q56991689QCT-based finite element models predict human vertebral strength in vitro significantly better than simulated DEXA
Q91937070QCT-based finite element prediction of pathologic fractures in proximal femora with metastatic lesions
Q35529112Shear strength and toughness of trabecular bone are more sensitive to density than damage
Q51170409The effect of damage on the viscoelastic behavior of human vertebral trabecular bone.
Q35185260Theoretical bounds for the influence of tissue-level ductility on the apparent-level strength of human trabecular bone

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