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Biomimetic design and implementation of muscle arrangement around hip joint for musculoskeletal humanoid

机译:肌肉骨骼类人猿髋关节周围肌肉排列的仿生设计和实现

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Our laboratory has tackled the composition theory approach of clarifying the structure in the human body by imitating it. Focusing on the hip joint, which has many complex muscle groups, we estimated and implemented 15 muscles to restrict the hip joint. However, it was difficult to implement such a quantity muscles to musculoskeletal humanoid because motor space is limited and the frame must have strength. In this paper, we propose new design and implementation methodology of musculoskeletal humanoids. First, we propose the biomimetic design of the hybrid pelvis, which uses metal and resin. Second, to arrange the muscles in a way similar to a human, we propose the human mimetic muscle arrangement by using the internal organ space. As a result, we developed the high-strength and biologically inspired pelvis, and achieved human-like muscle attachment layout and muscle arrangement.
机译:我们的实验室已经解决了通过模仿人体结构来澄清人体结构的成分理论方法。针对具有许多复杂肌肉群的髋关节,我们估计并实施了15条肌肉来限制髋关节。然而,由于运动空间有限并且框架必须具有强度,因此难以将如此数量的肌肉实施为肌肉骨骼类人动物。在本文中,我们提出了肌肉骨骼类人动物的新设计和实现方法。首先,我们提出了使用金属和树脂的混合骨盆的仿生设计。其次,为了以类似于人的方式来安排肌肉,我们提出了利用内部器官空间来模仿人的肌肉的安排。结果,我们开发了高强度且受生物学启发的骨盆,并实现了类似人的肌肉附着布局和肌肉排列。

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