[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

Ambard et al., 2009 - Google Patents

Mechanical behavior of annulus fibrosus: a microstructural model of fibers reorientation

Ambard et al., 2009

View PDF
Document ID
14440466389890323042
Author
Ambard D
Cherblanc F
Publication year
Publication venue
Annals of biomedical engineering

External Links

Snippet

Experimental uniaxial tensile tests have been carried out on annulus tissue samples harvested on pig and lamb lumbar intervertebral discs. When subjecting the samples to loading cycles, the stress–strain curves exhibit strong nonlinearities and hysteresis. This …
Continue reading at hal.science (PDF) (other versions)

Similar Documents

Publication Publication Date Title
Ambard et al. Mechanical behavior of annulus fibrosus: a microstructural model of fibers reorientation
Korhonen et al. Fibril reinforced poroelastic model predicts specifically mechanical behavior of normal, proteoglycan depleted and collagen degraded articular cartilage
Wilson et al. Stresses in the local collagen network of articular cartilage: a poroviscoelastic fibril-reinforced finite element study
Wilson et al. A fibril-reinforced poroviscoelastic swelling model for articular cartilage
Jurvelin et al. Mechanical anisotropy of the human knee articular cartilage in compression
Ayturk et al. Parametric convergence sensitivity and validation of a finite element model of the human lumbar spine
Beckstein et al. Comparison of animal discs used in disc research to human lumbar disc: axial compression mechanics and glycosaminoglycan content
Charlebois et al. Nonlinear tensile properties of bovine articular cartilage and their variation with age and depth
Singh et al. Tensile properties of the mandibular condylar cartilage
McEvoy et al. Compressibility and anisotropy of the ventricular myocardium: experimental analysis and microstructural modeling
Klisch et al. Application of a fiber-reinforced continuum theory to multiple deformations of the annulus fibrosus
Klets et al. Comparison of different material models of articular cartilage in 3D computational modeling of the knee: Data from the Osteoarthritis Initiative (OAI)
Malandrino et al. Regional annulus fibre orientations used as a tool for the calibration of lumbar intervertebral disc finite element models
Butler et al. Interstitial fluid flow in tendons or ligaments: a porous medium finite element simulation
Mengoni et al. Derivation of inter-lamellar behaviour of the intervertebral disc annulus
Dabiri et al. Influences of the depth-dependent material inhomogeneity of articular cartilage on the fluid pressurization in the human knee
Sharabi et al. The mechanical role of the radial fiber network within the annulus fibrosus of the lumbar intervertebral disc: a finite elements study
Claeson et al. Planar biaxial extension of the lumbar facet capsular ligament reveals significant in-plane shear forces
Baldit et al. Experimental analysis of the transverse mechanical behaviour of annulus fibrosus tissue
Cortes et al. The intervertebral disc: overview of disc mechanics
Guo et al. Fibre–matrix interaction in the human annulus fibrosus
Aernouts et al. Quantification of tympanic membrane elasticity parameters from in situ point indentation measurements: validation and preliminary study
Bezci et al. Nonlinear stress-dependent recovery behavior of the intervertebral disc
Jiang et al. A visco-hyperelastic constitutive model for human spine ligaments
Mengoni et al. Annulus fibrosus functional extrafibrillar and fibrous mechanical behaviour: experimental and computational characterisation