The collagen network of the annulus fibrosus largely controls the functional biomechanics of the lumbar intervertebral discs (IVDs). Quantitative anatomical examinations have shown bundle orientation patterns, possibly coming from regional adaptations of the annulus mechanics. This study aimed to show that the regional differences in annulus mechanical behaviour could be reproduced by considering only fibre orientation changes. Using the finite element method, a lumbar annulus was modelled as a poro-hyperelastic material in which fibres were represented by a direction-dependent strain energy density term. Fibre orientations were calibrated to reproduce the annulus tensile behaviours measured for four different regions: posterior outer, ante...
The Ovine spine is an accepted model to investigate the biomechanical behaviour of the human lumbar ...
If patient-specific finite element models of the spine could be developed, they would offer enormous...
The intervertebral disc is a complex structure unlike any other in the human body. The capability to...
The collagen network of the annulus fibrosus largely controls the functional biomechanics of the lum...
In the human lumbar spine, annulus fibr osus (AF) fibres la rgely contribute to intervertebral disc ...
Numerical models of the intervertebral disc, which address mechanical questions commonly make use of...
The intervertebral discs permit motion and distribute the large and complex loads of the spine. The ...
Accurate modeling of the annulus fibrosus (AF) is a crucial aspect to study spine mechanics in silic...
Abstract only availableThe objective is to create an accurate finite element model of the interverte...
Due to the importance of the intervertebral disc in the mechanical behavior of the human spine, spec...
Besides the biology, stresses and strains within the tissue greatly influence the location of damage...
Collagen fibers within the annulus fibrosus (AF) lamellae are unidirectionally aligned with alternat...
The inter-lamellar connectivity of the annulus fibrosus in the intervertebral disc has been shown to...
<div><p>The Ovine spine is an accepted model to investigate the biomechanical behaviour of the human...
AbstractThe inter-lamellar connectivity of the annulus fibrosus in the intervertebral disc has been ...
The Ovine spine is an accepted model to investigate the biomechanical behaviour of the human lumbar ...
If patient-specific finite element models of the spine could be developed, they would offer enormous...
The intervertebral disc is a complex structure unlike any other in the human body. The capability to...
The collagen network of the annulus fibrosus largely controls the functional biomechanics of the lum...
In the human lumbar spine, annulus fibr osus (AF) fibres la rgely contribute to intervertebral disc ...
Numerical models of the intervertebral disc, which address mechanical questions commonly make use of...
The intervertebral discs permit motion and distribute the large and complex loads of the spine. The ...
Accurate modeling of the annulus fibrosus (AF) is a crucial aspect to study spine mechanics in silic...
Abstract only availableThe objective is to create an accurate finite element model of the interverte...
Due to the importance of the intervertebral disc in the mechanical behavior of the human spine, spec...
Besides the biology, stresses and strains within the tissue greatly influence the location of damage...
Collagen fibers within the annulus fibrosus (AF) lamellae are unidirectionally aligned with alternat...
The inter-lamellar connectivity of the annulus fibrosus in the intervertebral disc has been shown to...
<div><p>The Ovine spine is an accepted model to investigate the biomechanical behaviour of the human...
AbstractThe inter-lamellar connectivity of the annulus fibrosus in the intervertebral disc has been ...
The Ovine spine is an accepted model to investigate the biomechanical behaviour of the human lumbar ...
If patient-specific finite element models of the spine could be developed, they would offer enormous...
The intervertebral disc is a complex structure unlike any other in the human body. The capability to...