Mesh : Animals Starfish / physiology Extremities / physiology Gait / physiology Locomotion / physiology Robotics

来  源:   DOI:10.1016/j.cub.2024.05.012

Abstract:
Experimental, modeling, and robotic research shows that switching of sea stars from crawling to bouncing gaits does not require centralized neural control. Bouncing can instead arise cooperatively, with synchronization of sea star tube feet occurring by locally acting mechanisms alone.
摘要:
实验性的,建模,机器人研究表明,将海星从爬行切换到弹跳的步态不需要集中的神经控制。相反,弹跳可以合作出现,仅通过局部作用机制实现海星管脚的同步。
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