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Three-dimensional finite element modelling of skeletal muscles: Parameter identification, simulation and verification

Three-dimensional finite element modelling of skeletal muscles: Parameter identification, simulation and verification
骨骼肌三维有限元建模:参数辨识、仿真与验证
批准号:
127753742
负责人:
Professor Dr.-Ing. Markus Böl
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2009
资助国家:
德国
项目状态:
已结题
起止时间:
2008-12-31 至 2023-12-31

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中文摘要
翻译
由于大多数肌肉被紧紧地包裹在“肌肉包”中,它们在收缩时必须与周围的肌肉组织相互作用。为了在力量产生和收缩速度的前提下对肌肉填充有更深入的了解,有必要研究肌肉包装的结构、三维变形和动力发展,基于这个问题,本项目整个资助阶段的主要目标是开发一个三维肌肉模型,能够真实地预测肌肉收缩过程中的力量发展和三维变形。兔子的比目鱼肌(SOL)已经做到了这一点。在这个最后的资助阶段,开发的模型还将被转移到兔的其他小腿肌肉(腓肠肌:GAS,足底肌肉:解放军),最终将被合并为肌肉包模型(SOL,GAS,PLA)。因此,完成整个项目的最后阶段的目标是额外获取几何数据(腱膜定位,三维纤维分布),由于肌肉填充对肌肉结构的影响,这些数据的必要性已被证明。此外,应完成前一个供资阶段的公开工作,以确定天然气和解放军的材料性质,并进行数据评估和模型验证。由于工作步骤费时,有时甚至是意想不到的(这是处理申请所必需的),在以前获得资金的项目期内,这是不可能的。因此,仍然需要对气体和整个肌肉包在收缩过程中广泛的、实验性的、三维的肌肉表面数据进行评估。在最后一个资助阶段收集的数据将被合并到描述肌肉包的三维模型中。因此,第一次有了肌肉包模型,它能够处理关于肌肉、肌肉包和身体部分的功能和设计的选定问题。
英文摘要
As most muscles are tightly packed in ‘muscle-packages’, they have to interact with surrounding muscle tissue during contraction. In order to gain a deeper understanding of muscle packing under the premise of force generation and contraction velocity, it is necessary to study the architecture, the three-dimensional deformation and the power development of muscle packages.Based on this question, the main goal of this project throughout the entire funding phase is the development of a three-dimensional muscle model that allows realistic predictions of force development and three-dimensional deformation during muscle contractions. This was already achieved for the soleus muscle (SOL) of the rabbit. In this final funding phase, the developed model will also be transferred to other calf muscles of the rabbit (gastrocnemius muscle: GAS, plantaris muscle: PLA), which will ultimately be merged into a muscle package model (SOL, GAS, PLA).Thus, the goal of this final phase, which completes the overall project, is the additional acquisition of geometry data (aponeurosis localisation, three-dimensional fibre distributions) whose necessity has been proven due to the impact of muscle packing on muscle architecture. Further, open work from the previous funding phase for the characterisation of the material properties of GAS and PLA as well as for data evaluation and model validation shall be completed. Due to time-consuming and sometimes unexpected working steps (which were necessary for the processing of the application), this was not possible in the previously funded project period. Hence, there are extensive, experimental, three-dimensional muscle surface data during contraction for the GAS and the entire muscle package that still need to be evaluated.The data collected in this last funding phase will be incorporated into a three-dimensional model describing the muscle package. Thus, for the first time, a muscle package model is available, which enables the handling of selected questions on the function and the design of muscles, muscle packages and body segments.
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