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Xuehuan He

Showing results (1-10 of 14) with videos related to

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Acta Biomaterialia|June 27, 2022
On strain-based rupture criterion for ascending aortic aneurysm: The role of fiber wavinessXuehuan He, Jia Lu
Biomechanics and Modeling in Mechanobiology|June 26, 2021
Incorporating fiber recruitment in hyperelastic modeling of vascular tissues by means of kinematic averageJia Lu, Xuehuan He
International Journal for Numerical Methods in Biomedical Engineering|September 27, 2022
Modeling planar response of vascular tissues using quadratic functions of effective strainXuehuan He, Jia Lu
Computer Methods in Biomechanics and Biomedical Engineering|November 7, 2018
Numerical evaluation of the efficacy of small-caliber colonoscopes in reducing patient pain during a colonoscopyDebao Zhou, Xuehuan He
Journal of the Mechanical Behavior of Biomedical Materials|December 21, 2020
Prediction of local strength of ascending thoracic aortic aneurysmsXuehuan He, Stephane Avril, Jia Lu
Acta Biomaterialia|February 21, 2025
A waviness-centered damage model for collagenous soft tissuesJia Lu, Xuehuan He, Ferdinando Auricchio
Biomechanics and Modeling in Mechanobiology|January 3, 2021
Estimating aortic thoracic aneurysm rupture risk using tension-strain data in physiological pressure range: an in vitro studyXuehuan He, Stephane Avril, Jia Lu
Acta Biomaterialia|September 24, 2021
Uniaxial properties of ascending aortic aneurysms in light of effective stretchXuehuan He, Ferdinando Auricchio, Simone Morganti, et al.
Acta Biomaterialia|October 18, 2024
Comparing continuum and direct fiber models of soft tissues: An ocular biomechanics example reveals that continuum models may artificially disrupt the strains at both the tissue and fiber levelsXuehuan He, Mohammad R Islam, Fengting Ji, et al.
Biorxiv : the Preprint Server for Biology|September 24, 2024
Comparing continuum and direct fiber models of soft tissues. An ocular biomechanics example reveals that continuum models may artificially disrupt the strains at both the tissue and fiber levelsXuehuan He, Mohammad R Islam, Fengting Ji, et al.
Pageof 2

Showing results (1-10 of 14) with videos related to

Sort By:
Pageof 2
Acta Biomaterialia|June 27, 2022
On strain-based rupture criterion for ascending aortic aneurysm: The role of fiber wavinessXuehuan He, Jia Lu
Biomechanics and Modeling in Mechanobiology|June 26, 2021
Incorporating fiber recruitment in hyperelastic modeling of vascular tissues by means of kinematic averageJia Lu, Xuehuan He
International Journal for Numerical Methods in Biomedical Engineering|September 27, 2022
Modeling planar response of vascular tissues using quadratic functions of effective strainXuehuan He, Jia Lu
Computer Methods in Biomechanics and Biomedical Engineering|November 7, 2018
Numerical evaluation of the efficacy of small-caliber colonoscopes in reducing patient pain during a colonoscopyDebao Zhou, Xuehuan He
Journal of the Mechanical Behavior of Biomedical Materials|December 21, 2020
Prediction of local strength of ascending thoracic aortic aneurysmsXuehuan He, Stephane Avril, Jia Lu
Acta Biomaterialia|February 21, 2025
A waviness-centered damage model for collagenous soft tissuesJia Lu, Xuehuan He, Ferdinando Auricchio
Biomechanics and Modeling in Mechanobiology|January 3, 2021
Estimating aortic thoracic aneurysm rupture risk using tension-strain data in physiological pressure range: an in vitro studyXuehuan He, Stephane Avril, Jia Lu
Acta Biomaterialia|September 24, 2021
Uniaxial properties of ascending aortic aneurysms in light of effective stretchXuehuan He, Ferdinando Auricchio, Simone Morganti, et al.
Acta Biomaterialia|October 18, 2024
Comparing continuum and direct fiber models of soft tissues: An ocular biomechanics example reveals that continuum models may artificially disrupt the strains at both the tissue and fiber levelsXuehuan He, Mohammad R Islam, Fengting Ji, et al.
Biorxiv : the Preprint Server for Biology|September 24, 2024
Comparing continuum and direct fiber models of soft tissues. An ocular biomechanics example reveals that continuum models may artificially disrupt the strains at both the tissue and fiber levelsXuehuan He, Mohammad R Islam, Fengting Ji, et al.
Pageof 2