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Onderzoeker
Amelie Sas
- Disciplines:Biomechanica
Affiliaties
- Biomechanica (BMe) (Afdeling)
Lid
Vanaf1 aug 2020 → 30 jun 2022 - Afdeling Biomechanica (Afdeling)
Lid
Vanaf18 sep 2017 → 31 jul 2020
Projecten
1 - 1 of 1
- Mechanische en structurele veranderingen na chirurgische behandeling van knie osteoarthritisVanaf18 sep 2017 → 31 dec 2021Financiering: FWO Strategische Onderzoeksbeurs
Publicaties
1 - 10 van 10
- Fracture risk assessment and evaluation of femoroplasty in metastatic proximal femurs. An in vivo CT-based finite element study(2023)
Auteurs: Amelie Sas, Hazem Wafa, An Sermon, Harry van Lenthe
Pagina's: 225 - 234 - Preventing Femoral Fractures in Patients with Bone Metastases(2021)
Auteurs: Amelie Sas, Harry van Lenthe, An Sermon
- Cemented short-stem total hip arthroplasty: Characteristics of line-to-line versus undersized cementing techniques using a validated CT-based finite element analysis(2021)
Auteurs: Fahimeh Azari, Amelie Sas, Harry van Lenthe
Pagina's: 1681 - 1690 - Hip implants can restore anatomical and medialized rotation centres in most cases: three-dimensional templating study comparing four
implantation strategies.(2021)
Auteurs: Amelie Sas
Pagina's: 476 - 485 - Mechanical and morphological characterization of PMMA/bone composites in human femoral heads(2021)
Auteurs: Amelie Sas, Harry van Lenthe
- Nonlinear voxel-based finite element model for strength assessment of healthy and metastatic proximal femurs(2020)
Auteurs: Amelie Sas, Harry van Lenthe
- Finite element models for fracture prevention in patients with metastatic bone disease. A literature review(2020)
Auteurs: Amelie Sas, An Sermon, Harry van Lenthe
- Cement augmentation of metastatic lesions in the proximal femur can improve bone strength(2020)
Auteurs: Amelie Sas, Dries Van Camp, Bert Lauwers, An Sermon, Harry van Lenthe
- Effect of anatomical variability on stress-shielding induced by short calcar-guided stems: Automated finite element analysis of 90 femora(2019)
Auteurs: Amelie Sas, Harry van Lenthe
Pagina's: 681 - 688 - Experimental validation of a voxel-based finite element model simulating femoroplasty of lytic lesions in the proximal femur
Auteurs: Amelie Sas, An Sermon, Harry van Lenthe