OpenSim跟腱建模与仿真验证

Muhammad Salman, M. H. Tanveer
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引用次数: 0

摘要

跟腱是一个非常重要的肌腱,对个人的运动至关重要。这些肌腱一旦被撕裂,就很难愈合。为了避免这种情况,了解普通人跟腱的局限性是至关重要的。为了研究跟腱的特性,研究可以通过多种方式进行,例如体内标本的数据收集。虽然这是可以做到的,但使用在线模拟可以获得更快、更准确的数据。OpenSim是一个可以用来模拟跟腱的程序。在这项研究中,研究了5名年龄在22+/ - 5岁的男性和女性。受试者将单脚站立这是单腿和跟腱承受的最大重量。用激光位移传感器等传感器来计算脚上的力。受试者的体重会引起地面反作用力,然后计算腓肠肌和比目鱼肌通过跟腱对跟骨施加的拉力的大小。受试者的反作用力的大小将施加在踝关节上并由胫骨施加在距骨穹窿上。跟腱附着在跟骨上,对于脚的这个位置,估计跟腱中拉力的作用线与水平成q (θ)角,踝关节反作用力的作用线与水平成b (β)角。我们将使用力向量来绘制并发图,以找出跟腱的未知力和胫骨对关节的反作用力。通过研究跟腱的特性,当它处于两个不同的背屈角度时。这些角从0°变化到90°。这些并发力矢量图方法将应用于这两种构型,以找到跟腱的未知力和胫骨对距骨圆顶的反应。OpenSim主要用于生物力学建模和模型分析。本研究论文的目的是提供从真实个体收集的数据和OpenSim模型的模拟数据的比较。
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Modeling and Simulation of Achilles Tendon in OpenSim for Verification
The Achilles tendon is a very important tendon that is vital to an individual’s movement. Once these tendons are torn, they become very difficult to heal. In order to avoid this situation, it is crucial to understand the limitations of the Achilles tendon on the average person. To study the properties of an Achilles tendon, research can be done in many ways, such as data collection of in-vivo specimens. Although this can be done, using an online simulation can result in quicker and more accurate data. One program that can be used to create a simulation of an Achilles tendon is OpenSim. In this study 5 different subjects, both male and female with ages 22+/−5 years are studied. The subject will stand on one foot which is the maximum amount of weight on one leg and that Achilles Tendon. The forces will be calculated on that foot using sensors such as laser displacement sensors. The weight of the subject will cause the ground reaction and the magnitude of the tensile force which will be exerted by the gastrocnemius and soleus muscles on the calcaneus through the Achilles tendon will be calculated. The magnitude of the reaction force of the subject will be exerted at the ankle joint and it is applied by the tibia on the talus dome. The Achilles tendon is attached to the calcaneus bone and for this position of the foot, it is estimated that the line of action of the tensile force in the Achilles tendon makes an angle q (theta) with the horizontal, and the line of action of the ankle joint reaction force makes an angle b (beta) with the horizontal. We will use the force vectors to draw the concurrent diagram in order to find the unknown forces of the Achilles tendon and the tibia reactive force on the joint. By studying the properties of the Achilles tendon, while it is at 2 different dorsiflexed angles. These angles will vary from 0 degrees to 90 degrees. These concurrent force vector diagrams method will be applied to both configurations to find the unknown forces of the Achilles tendon and the tibia reaction on the dome of the talus. OpenSim is mainly used for biomechanical modeling and analysis of those models. The purpose of this research paper is to provide a comparison of data collected from real individuals and the simulation data from an OpenSim model.
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