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首页> 外文期刊>PLoS Computational Biology >OpenSim: Simulating musculoskeletal dynamics and neuromuscular control to study human and animal movement
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OpenSim: Simulating musculoskeletal dynamics and neuromuscular control to study human and animal movement

机译:OpenSim:模拟肌肉骨骼动力学和神经肌肉控制以研究人和动物的运动

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Movement is fundamental to human and animal life, emerging through interaction of complex neural, muscular, and skeletal systems. Study of movement draws from and contributes to diverse fields, including biology, neuroscience, mechanics, and robotics. OpenSim unites methods from these fields to create fast and accurate simulations of movement, enabling two fundamental tasks. First, the software can calculate variables that are difficult to measure experimentally, such as the forces generated by muscles and the stretch and recoil of tendons during movement. Second, OpenSim can predict novel movements from models of motor control, such as kinematic adaptations of human gait during loaded or inclined walking. Changes in musculoskeletal dynamics following surgery or due to human device interaction can also be simulated; these simulations have played a vital role in several applications, including the design of implantable mechanical devices to improve human grasping in individuals with paralysis. OpenSim is an extensible and user-friendly software package built on decades of knowledge about computational modeling and simulation of biomechanical systems. OpenSim's design enables computational scientists to create new state-of-the-art software tools and empowers others to use these tools in research and clinical applications. OpenSim supports a large and growing community of biomechanics and rehabilitation researchers, facilitating exchange of models and simulations for reproducing and extending discoveries. Examples, tutorials, documentation, and an active user forum support this community. The OpenSim software is covered by the Apache License 2.0, which permits its use for any purpose including both nonprofit and commercial applications. The source code is freely and anonymously accessible on GitHub, where the community is welcomed to make contributions. Platform-specific installers of OpenSim include a GUI and are available on simtk.org.
机译:运动是人类和动物生命的基础,通过复杂的神经,肌肉和骨骼系统的相互作用而出现。运动研究来自生物学,生物学,神经科学,力学和机器人学等各个领域,并为之做出了贡献。 OpenSim结合了这些领域的方法,以创建快速准确的运动模拟,从而实现两项基本任务。首先,该软件可以计算出难以通过实验测量的变量,例如肌肉产生的力以及运动过程中肌腱的拉伸和后坐力。其次,OpenSim可以根据运动控制模型预测新颖的运动,例如在有负荷或倾斜步行过程中人的步态的运动学适应性。也可以模拟手术后或由于人机交互而引起的肌肉骨骼动力学变化;这些模拟在多种应用中起着至关重要的作用,包括设计可植入机械设备以改善人在瘫痪患者中的抓地力。 OpenSim是一个可扩展且用户友好的软件包,建立在数十年的有关生物力学系统的计算建模和仿真知识的基础上。 OpenSim的设计使计算科学家能够创建新的最新软件工具,并使其他人能够在研究和临床应用中使用这些工具。 OpenSim支持不断扩大的生物力学和康复研究人员社区,从而促进了模型和仿真的交换,以再现和扩展发现。示例,教程,文档和活跃的用户论坛均支持该社区。 OpenSim软件受Apache License 2.0的保护,该许可证允许将其用于任何目的,包括非营利性和商业应用程序。源代码可在GitHub上自由和匿名访问,欢迎社区做出贡献。 OpenSim的特定于平台的安装程序包括GUI,可以在simtk.org上找到。

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