Journal of Biomechanical Engineering, Volume 131, Issues 1-6American Society of Mechanical Engineers, 2009 - Bioengineering |
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Page 31004-9
... increased polymerization pH , also affected strains in the width and thick- ness directions . Interestingly , collagen ECMs with long , thin fibrils ( increased polymerization pH ) were found to have in- creased transverse strains . In ...
... increased polymerization pH , also affected strains in the width and thick- ness directions . Interestingly , collagen ECMs with long , thin fibrils ( increased polymerization pH ) were found to have in- creased transverse strains . In ...
Page 51004-18
... Increases Exponentially as a Function of Stretch Magnitude . In the present study , the UTS increased exponentially with increasing stretch , and this enhancement of tissue strength did not require continuous stimulation , exogenous ...
... Increases Exponentially as a Function of Stretch Magnitude . In the present study , the UTS increased exponentially with increasing stretch , and this enhancement of tissue strength did not require continuous stimulation , exogenous ...
Page
... increased accordingly . Figure 5 showed the maximum velocities and RSSS under the different suture lengths and ... increased with the increase in suture length . The maximum velocity increased by around 15 % and the maximum RSS almost ...
... increased accordingly . Figure 5 showed the maximum velocities and RSSS under the different suture lengths and ... increased with the increase in suture length . The maximum velocity increased by around 15 % and the maximum RSS almost ...
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Abdominal Aortic Aneurysm acinar airway alignment alveolated analysis aneurysm angle anisotropic ankle applied arterial ASME average axial behavior bifurcation Bioengineering Biomech BIOMECHANICAL ENGINEERING Biomed bone boundary conditions calculated calibration cancellous bone cartilage cells collagen collagen fibers computational curves cycle deformation deposition displacement distribution dynamics effect elastic elastin equations error experimental fibril finite element flow fluid force function gait geometry Human increased indentation inverse dynamics kinematics length linear loading markers mass material matrix maximum measured mechanical membrane mesh method mg/ml microtubule modulus motion muscle nonlinear normal optimization orientation osteons parameters paraplegia particles PID controller platelets predicted pressure properties prosthetic radius region response rotation sarcomere segment sensor shear stress simulations solution stability stiffness strain structure surface surrogate model tion tissue trajectories values valve velocity viscoelastic von Mises stress wall