Clinically useful finite element models of the natural ankle – A review

脚踝 相关性(法律) 有限元法 一致性(知识库) 严厉 计算机科学 光学(聚焦) 简单 接头(建筑物) 自然(考古学) 数据挖掘 医学物理学 数据科学 人工智能 医学 工程类 数学 结构工程 病理 哲学 物理 几何学 光学 认识论 政治学 法学 考古 历史
作者
Harriet G. Talbott,Shilpa Jha,A. Gulati,Claire Brockett,Jitendra Mangwani,Elise Pegg
出处
期刊:Clinical Biomechanics [Elsevier]
卷期号:106: 106006-106006 被引量:5
标识
DOI:10.1016/j.clinbiomech.2023.106006
摘要

Background Biomechanical simulation of the foot and ankle complex is a growing research area but compared to simulation of joints such as hip and knee, it has been under investigated and lacks consistency in research methodology. The methodology is variable, data is heterogenous and there are no clear output criteria. Therefore, it is very difficult to correlate clinically and draw meaningful inferences. Methods The focus of this review is finite element simulation of the native ankle joint and we will explore: the different research questions asked, the model designs used, ways the model rigour has been ensured, the different output parameters of interest and the clinical impact and relevance of these studies. Findings The 72 published studies explored in this review demonstrate wide variability in approach. Many studies demonstrated a preference for simplicity when representing different tissues, with the majority using linear isotropic material properties to represent the bone, cartilage and ligaments; this allows the models to be complex in another way such as to include more bones or complex loading. Most studies were validated against experimental or in vivo data, but a large proportion (40%) of studies were not validated at all, which is an area of concern. Interpretation Finite element simulation of the ankle shows promise as a clinical tool for improving outcomes. Standardisation of model creation and standardisation of reporting would increase trust, and enable independent validation, through which successful clinical application of the research could be realised.

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