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John M Peloquin

Showing results (1-10 of 28) with videos related to

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Journal of the Royal Society, Interface|November 12, 2024
Global and local identifiability analysis of a nonlinear biphasic constitutive model in confined compressionJohn M Peloquin, Dawn M Elliott
Journal of the Mechanical Behavior of Biomedical Materials|January 8, 2016
A comparison of stress in cracked fibrous tissue specimens with varied crack location, loading, and orientation using finite element analysisJohn M Peloquin, Dawn M Elliott
Journal of Biomechanical Engineering|April 4, 2026
Vertebral Body Kinematics Measured from T1-weighted MRI with Optimized Rigid RegistrationJohn M Peloquin, Harrah Newman, Dawn M Elliott
Journal of Biomechanical Engineering|March 20, 2023
Volume Loss and Recovery in Bovine Knee Meniscus Loaded in Circumferential TensionJohn M Peloquin, Michael H Santare, Dawn M Elliott
Journal of Biomechanical Engineering|January 1, 2016
Advances in Quantification of Meniscus Tensile Mechanics Including Nonlinearity, Yield, and FailureJohn M Peloquin, Michael H Santare, Dawn M Elliott
Royal Society Open Science|December 20, 2018
Short cracks in knee meniscus tissue cause strain concentrations, but do not reduce ultimate stress, in single-cycle uniaxial tensionJohn M Peloquin, Michael H Santare, Dawn M Elliott
Journal of Biomechanics|July 8, 2014
Validation and application of an intervertebral disc finite element model utilizing independently constructed tissue-level constitutive formulations that are nonlinear, anisotropic, and time-dependentNathan T Jacobs, Daniel H Cortes, John M Peloquin, et al.
JOR Spine|August 2, 2021
Multiaxial validation of a finite element model of the intervertebral disc with multigenerational fibers to establish residual strainHarrah R Newman, John F DeLucca, John M Peloquin, et al.
Acta Biomaterialia|October 6, 2012
Evaluation of strengthening mechanisms in calcite single crystals from mollusk shellsMiki E Kunitake, Lauren M Mangano, John M Peloquin, et al.
Journal of the Royal Society, Interface|November 21, 2019
Helical fibrillar microstructure of tendon using serial block-face scanning electron microscopy and a mechanical model for interfibrillar load transferBabak N Safa, John M Peloquin, Jessica R Natriello, et al.
Pageof 3

Showing results (1-10 of 28) with videos related to

Sort By:
Pageof 3
Journal of the Royal Society, Interface|November 12, 2024
Global and local identifiability analysis of a nonlinear biphasic constitutive model in confined compressionJohn M Peloquin, Dawn M Elliott
Journal of the Mechanical Behavior of Biomedical Materials|January 8, 2016
A comparison of stress in cracked fibrous tissue specimens with varied crack location, loading, and orientation using finite element analysisJohn M Peloquin, Dawn M Elliott
Journal of Biomechanical Engineering|April 4, 2026
Vertebral Body Kinematics Measured from T1-weighted MRI with Optimized Rigid RegistrationJohn M Peloquin, Harrah Newman, Dawn M Elliott
Journal of Biomechanical Engineering|March 20, 2023
Volume Loss and Recovery in Bovine Knee Meniscus Loaded in Circumferential TensionJohn M Peloquin, Michael H Santare, Dawn M Elliott
Journal of Biomechanical Engineering|January 1, 2016
Advances in Quantification of Meniscus Tensile Mechanics Including Nonlinearity, Yield, and FailureJohn M Peloquin, Michael H Santare, Dawn M Elliott
Royal Society Open Science|December 20, 2018
Short cracks in knee meniscus tissue cause strain concentrations, but do not reduce ultimate stress, in single-cycle uniaxial tensionJohn M Peloquin, Michael H Santare, Dawn M Elliott
Journal of Biomechanics|July 8, 2014
Validation and application of an intervertebral disc finite element model utilizing independently constructed tissue-level constitutive formulations that are nonlinear, anisotropic, and time-dependentNathan T Jacobs, Daniel H Cortes, John M Peloquin, et al.
JOR Spine|August 2, 2021
Multiaxial validation of a finite element model of the intervertebral disc with multigenerational fibers to establish residual strainHarrah R Newman, John F DeLucca, John M Peloquin, et al.
Acta Biomaterialia|October 6, 2012
Evaluation of strengthening mechanisms in calcite single crystals from mollusk shellsMiki E Kunitake, Lauren M Mangano, John M Peloquin, et al.
Journal of the Royal Society, Interface|November 21, 2019
Helical fibrillar microstructure of tendon using serial block-face scanning electron microscopy and a mechanical model for interfibrillar load transferBabak N Safa, John M Peloquin, Jessica R Natriello, et al.
Pageof 3