Designing biomimetic artificial tendons requires a thorough, data-based understanding of the tendon's inner material properties. The current work exploits viscoelastic experimental observations at the tendon fascicle scale, making use of mechanical and data analysis methods. More specifically, based on reported elastic, volumetric and relaxation fascicle scale properties, we infer most probable, mechanically compatible material attributes at the fiber scale. In particular, the work provides pairs of elastic and viscous fiber-scale moduli, which can reproduce the upper scale tendon mechanics. The computed range of values for the fiber-scale tendon viscosity attest to the substantial stress relaxation capabilities of tendons. More importantly...
Ligaments and tendons are fibrous connective tissues that connect the structures of the musculoskele...
Tendon disorders are painful, disabling, and a major healthcare problem, with millions of people aff...
Models of human musculoskeletal tissue are the missing component needed to make significant advances...
Designing biomimetic artificial tendons requires a thorough, data-based understanding of the tendon'...
Although the tensile mechanical properties of tendon have been well characterised, the viscoelastic ...
In the current work, we investigate the effect of aging on the viscosity of tendon subunits. To that...
International audienceThe level of the fascicle including collagen fibers, membranes and interstitia...
The healing process of ruptured tendons is problematic due to scar tissue formation and deteriorated...
\u3cp\u3eBackground: Computational models of Achilles tendons can help understanding how healthy ten...
Tendons are adapted to carry large, repeated loads and are clinically important for the maintenance ...
The in vivo mechanical function of biologic connective tissues is generally hypothesized to be a cri...
Computational models of Achilles tendons can help understanding how healthy tendons are affected by ...
Computational models of Achilles tendons can help understanding how healthy tendons are affected by ...
Tendons are adapted to carry large, repeated loads and are clinically important for the maintenance ...
Tendons are connective tissues mainly composed of hierarchically organized extracellular matrix (ECM...
Ligaments and tendons are fibrous connective tissues that connect the structures of the musculoskele...
Tendon disorders are painful, disabling, and a major healthcare problem, with millions of people aff...
Models of human musculoskeletal tissue are the missing component needed to make significant advances...
Designing biomimetic artificial tendons requires a thorough, data-based understanding of the tendon'...
Although the tensile mechanical properties of tendon have been well characterised, the viscoelastic ...
In the current work, we investigate the effect of aging on the viscosity of tendon subunits. To that...
International audienceThe level of the fascicle including collagen fibers, membranes and interstitia...
The healing process of ruptured tendons is problematic due to scar tissue formation and deteriorated...
\u3cp\u3eBackground: Computational models of Achilles tendons can help understanding how healthy ten...
Tendons are adapted to carry large, repeated loads and are clinically important for the maintenance ...
The in vivo mechanical function of biologic connective tissues is generally hypothesized to be a cri...
Computational models of Achilles tendons can help understanding how healthy tendons are affected by ...
Computational models of Achilles tendons can help understanding how healthy tendons are affected by ...
Tendons are adapted to carry large, repeated loads and are clinically important for the maintenance ...
Tendons are connective tissues mainly composed of hierarchically organized extracellular matrix (ECM...
Ligaments and tendons are fibrous connective tissues that connect the structures of the musculoskele...
Tendon disorders are painful, disabling, and a major healthcare problem, with millions of people aff...
Models of human musculoskeletal tissue are the missing component needed to make significant advances...