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肌肉骨骼建模在肩部和上肢的临床应用。

Clinical applications of musculoskeletal modelling for the shoulder and upper limb.

机构信息

Department of Biomechanical Engineering and Biorobotics, Delft University of Technology, Delft, The Netherlands.

出版信息

Med Biol Eng Comput. 2013 Sep;51(9):953-63. doi: 10.1007/s11517-013-1099-5. Epub 2013 Jul 20.

Abstract

Musculoskeletal models have been developed to estimate internal loading on the human skeleton, which cannot directly be measured in vivo, from external measurements like kinematics and external forces. Such models of the shoulder and upper extremity have been used for a variety of purposes, ranging from understanding basic shoulder biomechanics to assisting in preoperative planning. In this review, we provide an overview of the most commonly used large-scale shoulder and upper extremity models and categorise the applications of these models according to the type of questions their users aimed to answer. We found that the most explored feature of a model is the possibility to predict the effect of a structural adaptation on functional outcome, for instance, to simulate a tendon transfer preoperatively. Recent studies have focused on minimising the mismatch in morphology between the model, often derived from cadaver studies, and the subject that is analysed. However, only a subset of the parameters that describe the model's geometry and, perhaps most importantly, the musculotendon properties can be obtained in vivo. Because most parameters are somehow interrelated, the others should be scaled to prevent inconsistencies in the model's structure, but it is not known exactly how. Although considerable effort is put into adding complexity to models, for example, by making them subject-specific, we have found little evidence of their superiority over current models. The current trend in development towards individualised, more complex models needs to be justified by demonstrating their ability to answer questions that cannot already be answered by existing models.

摘要

肌肉骨骼模型被开发出来,用于从运动学和外力等外部测量中估计人体骨骼无法直接在体内测量到的内部负荷。这些肩部和上肢模型已被用于各种目的,从了解基本肩部生物力学到协助术前规划。在这篇综述中,我们概述了最常用的大型肩部和上肢模型,并根据其用户旨在回答的问题类型对这些模型的应用进行分类。我们发现,模型最常被探索的特征是预测结构适应对功能结果的影响的可能性,例如,在术前模拟肌腱转移。最近的研究集中在最小化模型与被分析对象之间的形态差异上,模型通常源自尸体研究。然而,只能在一定程度上从体内获得描述模型几何形状的参数,也许最重要的是,描述肌肉腱属性的参数。由于大多数参数都存在某种相互关系,因此应该对其他参数进行缩放,以防止模型结构不一致,但目前尚不清楚具体应该如何操作。尽管人们为了增加模型的复杂性做出了相当大的努力,例如使模型具有个体特异性,但我们几乎没有发现它们比现有模型优越的证据。目前朝着个体化、更复杂的模型发展的趋势需要通过证明它们能够回答现有模型无法回答的问题来证明其合理性。

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