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Musculoskeletal Modeling and Analysis of Trikonasana

机译:Trikonasana的肌肉骨骼建模与分析

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Context: Yoga has origins speculated to date back to pre-Vedic Indian period and is practiced as a common exercise, both in India as well as all around the world. Although the yoga practices are ages old, there is not much research literature available. Moreover, with the advancement in technology, the modern analysis tools are not used up to their full potential. Aims: This research focuses on developing a framework for analyzing trikonasana, using the optical motion capture system, and validating the noninvasive method for analyzing muscle activity in prominent muscles while performing trikonasana. Subjects and Methods: We have adopted the noninvasive analysis method using optical motion capture system OptiTrack? for recording the human motion and musculoskeletal modeling software LifeMod? to analyze the muscle activity while performing trikonasana. Surface electromyography (sEMG) studies were performed using Trigno? (Delsys Inc.) wireless sEMG sensors to validate the LifeMod simulation results pertaining muscle activation. Results: It was observed that the characteristics of the sEMG match to that of the estimated muscle tension from the architecture used in this study. The muscle groups such as external right obliques muscles, rectus abdominis of the front leg, and gluteus maximus and gluteus medius of the rear leg were observed to undergo major activation during an isometric contraction while performing trikonasana. The magnitudes of the muscle tension during the left bend depict a close resemblance to the muscle tension magnitudes during the right bend. Conclusions: The optical motion capture system and musculoskeletal modeling software can be used to analyze muscle activity in any yoga exercise noninvasively. Since the yoga exercises majorly require the practitioner to maintain a certain posture for a considerable duration, our approach can be used to find the important muscles involved and their corresponding muscle tension when they undergo isometric contraction.
机译:背景:瑜伽的起源可追溯到印度吠陀前时期,在印度乃至世界各地都是普遍的练习方式。尽管瑜伽练习已经有很长的历史了,但是没有太多的研究文献。此外,随着技术的进步,现代分析工具还没有得到充分利用。目的:本研究着重于开发一个用于分析三角肌的框架,使用光学运动捕获系统,并验证在进行三角肌时分析突出肌肉中肌肉活动的非侵入性方法。主题和方法:我们采用了采用光学运动捕捉系统OptiTrack?的无创分析方法。用于记录人体运动和肌肉骨骼建模软件LifeMod?在进行三角肌分析时分析肌肉活动。表面肌电图(sEMG)研究是使用Trigno? (Delsys Inc.)无线sEMG传感器可验证与肌肉激活有关的LifeMod仿真结果。结果:观察到sEMG的特征与本研究中使用的体系结构估计的肌肉张力相匹配。在进行三角肌锻炼时,等轴测收缩期间观察到了诸如右外斜肌,前腿的腹直肌,后腿的臀大肌和臀中肌等肌肉群的主要激活。左弯时的肌肉张力大小与右弯时的肌肉张力大小非常相似。结论:光学运动捕捉系统和肌肉骨骼建模软件可用于无创地分析瑜伽运动中的肌肉活动。由于瑜伽练习主要要求从业者在相当长的一段时间内保持某种姿势,因此我们的方法可用于查找所涉及的重要肌肉及其等距收缩时的相应肌肉张力。

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