Inter-laboratory replicability and sensitivity study of a finite element model to quantify human femur failure load: case of metastases
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arXiv
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| Autores principales: | , , , , , , , , , |
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| Formato: | Preprint |
| Publicado: |
2024
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| Materias: | |
| Acceso en línea: | |
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| _version_ | 1866909106449678336 |
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| author | Gardegaront, Marc Sas, Amelie Brizard, Denis Levillain, Aurelie Bermond, Francois Confavreux, Cyrille B. Pialat, Jean-Baptiste van Lenthe, G. Harry Follet, Helene Mitton, David |
| author_facet | Gardegaront, Marc Sas, Amelie Brizard, Denis Levillain, Aurelie Bermond, Francois Confavreux, Cyrille B. Pialat, Jean-Baptiste van Lenthe, G. Harry Follet, Helene Mitton, David |
| contents | Metastases increase the risk of fracture when affecting the femur. Consequently, clinicians need to know if the patients femur can withstand the stress of daily activities. The current tools used in clinics are not sufficiently precise. A new method, the CT-scan-based finite element analysis, gives good predictive results. However, none of the existing models were tested for reproducibility. This is a critical issue to address in order to apply the technique on a large cohort around the world to help evaluate bone metastatic fracture risk in patients. Please see pdf file |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2402_09210 |
| institution | arXiv |
| publishDate | 2024 |
| record_format | arxiv |
| spellingShingle | Inter-laboratory replicability and sensitivity study of a finite element model to quantify human femur failure load: case of metastases Gardegaront, Marc Sas, Amelie Brizard, Denis Levillain, Aurelie Bermond, Francois Confavreux, Cyrille B. Pialat, Jean-Baptiste van Lenthe, G. Harry Follet, Helene Mitton, David Numerical Analysis Computation Metastases increase the risk of fracture when affecting the femur. Consequently, clinicians need to know if the patients femur can withstand the stress of daily activities. The current tools used in clinics are not sufficiently precise. A new method, the CT-scan-based finite element analysis, gives good predictive results. However, none of the existing models were tested for reproducibility. This is a critical issue to address in order to apply the technique on a large cohort around the world to help evaluate bone metastatic fracture risk in patients. Please see pdf file |
| title | Inter-laboratory replicability and sensitivity study of a finite element model to quantify human femur failure load: case of metastases |
| topic | Numerical Analysis Computation |
| url | https://arxiv.org/abs/2402.09210 |