Centre for Research in Computational and Applied Mechanics, University of Cape Town, 5th floor, Menzies Building, Private Bag X3, 7701 Rondebosch, South Africa.
Int J Numer Method Biomed Eng. 2013 Apr;29(4):492-514. doi: 10.1002/cnm.2531. Epub 2013 Jan 14.
The human tongue is composed mainly of skeletal muscle tissue and has a complex architecture. Its anatomy is characterised by interweaving yet distinct muscle groups. It is a significant contributor to the phenomenon of obstructive sleep apnoea syndrome. A realistic model of the tongue and computational simulations are important in areas such as linguistics and speech therapy. The aim of this work is to report on the construction of a geometric and constitutive model of the human tongue and to demonstrate its use in computational simulations for obstructive sleep apnoea syndrome research. The geometry of the tongue and each muscle group of the tongue, including muscle fibre orientations, are captured from the Visible Human Project dataset. The fully linear muscle model is based on the Hill three-element model that represents the constituent parts of muscle fibres. The mechanics of the model are limited to quasi-static, small-strain, linear-elastic behaviour. The main focus of this work is on the material directionality and muscle activation. The transversely isotropic behaviour of the muscle tissue is accounted for, as well as the influence of muscle activation. The behaviour of the model is illustrated in a number of benchmark tests and for the case of a subject in the supine position.
人体舌头主要由骨骼肌组织组成,具有复杂的结构。它的解剖结构以交织但又明显的肌肉群为特征。它是阻塞性睡眠呼吸暂停综合征现象的重要贡献者。舌头的真实模型和计算模拟在语言学和言语治疗等领域都很重要。这项工作的目的是报告构建人体舌头的几何和本构模型,并展示其在阻塞性睡眠呼吸暂停综合征研究中的计算模拟中的应用。舌头的几何形状和舌头的每个肌肉群,包括肌肉纤维的方向,都是从可视人项目数据集捕获的。完全线性肌肉模型基于代表肌肉纤维组成部分的希尔三元素模型。模型的力学仅限于准静态、小应变、线性弹性行为。这项工作的主要重点是材料方向性和肌肉激活。肌肉组织的各向异性行为以及肌肉激活的影响都得到了考虑。该模型的行为在一些基准测试和仰卧位患者的情况下进行了说明。