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A Robotics Perspective on Experimental Injury Biomechanics of Human Body Upper Extremities

机译:一种机器人技术人体上肢实验损伤生物力学观察

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Achieving a better understanding of injury mechanisms and significant factors affecting safety in robotics requires large amounts of ground-truth, medically classified biomechanical information. Representing impact data-sets as relationships between input parameters (reflected mass, velocity, injury) for different impact curvatures and test setups versus injury was previously proven to be very efficient for ensuring human safety through real-time robot control algorithms. However, such a data-driven safety framework requires enough data-sets to cover all practical collision incidents. In this work, resulting data-sets from our extensive literature review process on the human body upper extremities are summarized. We also adapt our previously developed robotics-compatible representations in terms of standardized testing setups, impact scenarios, and collision cases to distinctly categorize impact-testing experiments on the human body upper extremities. Each category can then be differentiated by a minimal representative set of test arrangements to unify the description, storage, reporting, and comparison of experimental settings and results. This way, every new impact test/incident can be easily categorized and compared against others in the developed digital database.
机译:更好地理解伤害机制和影响机器人安全性的重要因素需要大量的地面真理,医学上分类生物力学信息。将影响数据集作为不同冲击曲率的输入参数(反射质量,速度,损伤)之间的关系,并且先前被证明是非常有效的,以通过实时机器人控制算法确保人类安全。但是,这种数据驱动的安全框架需要足够的数据集来涵盖所有实际碰撞事件。在这项工作中,总结了我们在人体上肢的广泛文献审查过程中产生数据集。我们还通过标准化的测试设置,影响方案和碰撞案例来调整先前开发的机器人兼容的表示,以明显分类人体上肢的影响测试实验。然后,每个类别可以通过最小代表性的测试装置进行区分,以统一实验设置和结果的描述,存储,报告和比较。这样,每个新的冲击测试/事件都可以很容易地分类并与发达的数字数据库中的其他人进行比较。

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