0000000000199901

AUTHOR

Bernardo Innocenti

showing 2 related works from this author

Assessment of paradoxical anterior translation in a CR total knee prosthesis coupling dynamic RSA and FE techniques

2021

Purpose: The study aims were to assess the kinematic data, Internal-External (IE) rotation, and Antero-Posterior (AP) translation of the contact points between the femoral condyles and polyethylene insert and to develop a combined dynamic RSA-FE (Radiostereometric – Finite Element) model that gives results congruent with the literature. Methods: A cohort of 15 patients who underwent cemented cruciate-retaining highly congruent mobile-bearing total knee arthroplasty were analyzed during a sit-to-stand motor task. The kinematical data from Dynamic RSA were used as input for a patient-specific FE model to calculate condylar contact points between the femoral component and polyethylene insert. …

medicine.medical_specialtyKinematicsmedicine.medical_treatmentKinematicsRotationTranslation (geometry)ProsthesisCondyleTotal knee03 medical and health sciences0302 clinical medicineMobile bearingmedicineCoupling (piping)Orthopedics and Sports MedicineARTHROPLASTYMathematicsTKA FEATURESOrthodonticsOrthopedic surgery030222 orthopedicsOriginal PaperScience & TechnologyTKAGénéralités030229 sport sciencesDynamic RSAKinematicOrthopedicsOrthopedic surgerySurgeryFE analysiFE analysisLife Sciences & BiomedicineRD701-811
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Analysis of different geometrical features to achieve close-to-bone stiffness material properties in medical device: A feasibility numerical study

2021

Background and objective: In orthopedic medical devices, elasto-plastic behavior differences between bone and metallic materials could lead to mechanical issues at the bone-implant interface, as stress shielding. Those issue are mainly related to knee and hip arthroplasty, and they could be responsible for implant failure. To reduce mismatching-related adverse events between bone and prosthesis mechanical properties, modifying the implant's internal geometry varying the bulk stiffness and density could be the right approach. Therefore, this feasibility study aims to assess which in-body gap geometry improves, by reducing, the bulk stiffness. Methods: Using five finite element models, a unia…

Elastic ModulusArthroplasty Replacement HipIn-body gapsFinite Element AnalysisFeasibility StudiesHealth InformaticsStress MechanicalArthroplasty Replacement KneeSoftwareComputer Science ApplicationsMaterial stiffness
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