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Finite element models of the human shoulder complex: a review of their clinical implications and modelling techniques

机译:人肩复合体的有限元模型:其临床意义和建模技术综述

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摘要

The human shoulder is a complicated musculoskeletal structure and is a perfect compromise between mobility and stability. The objective of this paper is to provide a thorough review of previous finite element (FE) studies in biomechanics of the human shoulder complex. Those FE studies to investigate shoulder biomechanics have been reviewed according to the physiological and clinical problems addressed: glenohumeral joint stability, rotator cuff tears, joint capsular and labral defects and shoulder arthroplasty. The major findings, limitations, potential clinical applications and modelling techniques of those FE studies are critically discussed. The main challenges faced in order to accurately represent the realistic physiological functions of the shoulder mechanism in FE simulations involve (1) subject-specific representation of the anisotropic nonhomogeneous material properties of the shoulder tissues in both healthy and pathological conditions; (2) definition of boundary and loading conditions based on individualised physiological data; (3) more comprehensive modelling describing the whole shoulder complex including appropriate three-dimensional (3D) representation of all major shoulder hard tissues and soft tissues and their delicate interactions; (4) rigorous in vivo experimental validation of FE simulation results. Fully validated shoulder FE models would greatly enhance our understanding of the aetiology of shoulder disorders, and hence facilitate the development of more efficient clinical diagnoses, non-surgical and surgical treatments, as well as shoulder orthotics and prosthetics. (c) 2016 The Authors. International Journal for Numerical Methods in Biomedical Engineering published by John Wiley & Sons Ltd.
机译:人的肩膀是一个复杂的肌肉骨骼结构,是灵活性和稳定性之间的完美折衷。本文的目的是对人类肩部复合体生物力学中的有限元(FE)研究进行全面回顾。那些针对肩部生物力学研究的有限元研究已根据生理和临床问题进行了综述:盂肱关节稳定性,肩袖撕裂,关节囊和唇lab骨缺损以及肩关节置换术。严格讨论了这些有限元研究的主要发现,局限性,潜在的临床应用和建模技术。为了在有限元模拟中准确表示肩部机制的现实生理功能,面临的主要挑战包括:(1)在健康和病理情况下,受试者组织特定角度表示肩部组织的各向异性非均质材料特性; (2)根据个体化的生理数据定义边界和载荷条件; (3)更全面的建模,描述整个肩部复合体,包括所有主要肩部硬组织和软组织及其微妙相互作用的适当三维(3D)表示; (4)严格的体内实验验证有限元模拟结果。充分验证的肩关节有限元模型将极大地增进我们对肩部疾病病因的理解,从而促进更有效的临床诊断,非手术和外科治疗以及肩部矫形和假肢的发展。 (c)2016作者。 John Wiley&Sons Ltd.出版的《国际生物医学工程数值方法杂志》。

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