Finite Element Assessment of Bone Fragility from Clinical Images

Author:

Schileo EnricoORCID,Taddei Fulvia

Funder

Ministero della Salute

Publisher

Springer Science and Business Media LLC

Subject

Endocrinology, Diabetes and Metabolism

Reference88 articles.

1. Leslie WD, Morin SN. New developments in fracture risk assessment for current osteoporosis reports. Curr Osteoporos Rep. 2020;18:115–29. Reviews non FE-specific specific risk factors used to assess fracture risk. Motivates further reviewing for FE-specific risk factors

2. Keaveny TM, Clarke BL, Cosman F, Orwoll ES, Siris ES, Khosla S, Bouxsein ML. Biomechanical Computed Tomography analysis (BCT) for clinical assessment of osteoporosis. Osteoporos Int. 2020;31:1025–48. Reviews applications of BCT, the most clinically used and FDA-approved CT-to-FE workflow, having opportunistic CT diagnosis of osteoporosis as primary clinical indication. Acknowledges equivalent fracture prediction of strength estimates from CT-to-FE vs. aBMD (hip) or vBMD (spine)

3. Benemerito I, Griffiths W, Allsopp J, Furnass W, Bhattacharya P, Li X, Marzo A, Wood S, Viceconti M, Narracott A. Delivering computationally-intensive digital patient applications to the clinic: An exemplar solution to predict femoral bone strength from CT data. Comput Methods Prog Biomed. 2021;208:106200.

4. Lee Y, Ogihara N, Lee T. Assessment of finite element models for prediction of osteoporotic fracture. J Mech Behav Biomed Mater. 2019;97:312–20. Reviews methodological aspects of CT-to-FE, and claims consolidation of advancements in FE analysis before entering clinical scenarios

5. Falcinelli C, Whyne C. Image-based finite-element modeling of the human femur. Comput Methods Biomech Biomed Engin. 2020;23:1138–61. Reviews methodological aspects of femoral CT-to-FE; highlights similar (encouraging) results from different workflows; motivates the adoption of a standardized workflow

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