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Decentralized Control Mechanism for Determination of Moving Direction in Brittle Stars With Penta-Radially Symmetric Body

机译:五角对称物体确定脆性星运动方向的分散控制机制

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摘要

A brittle star, an echinoderm with penta-radially symmetric body, can make decisions about its moving direction and move adapting to various circumstances despite lacking a central nervous system and instead possessing a rather simple distributed nervous system. In this study, we aimed to elucidate the essential control mechanism underlying the determination of moving direction in brittle stars. Based on behavioral findings on brittle stars whose nervous systems were lesioned in various ways, we propose a phenomenological mathematical model. We demonstrate via simulations that the proposed model can well reproduce the behavioral findings. Our findings not only provide insights into the mechanism for the determination of moving direction in brittle stars, but also help understand the essential mechanism underlying autonomous behaviors of animals. Moreover, they will pave the way for developing fully autonomous robots that can make decisions by themselves and move adaptively under various circumstances.
机译:尽管没有中枢神经系统,而拥有一个相当简单的分布式神经系统,但脆性恒星是一个棘突状的棘突,具有五角向对称的身体,它可以决定其运动方向并适应各种情况。在这项研究中,我们旨在阐明确定脆性恒星运动方向的基本控制机制。基于对神经系统受到各种损伤的脆性恒星的行为发现,我们提出了一种现象学数学模型。我们通过仿真证明,提出的模型可以很好地重现行为发现。我们的发现不仅为确定脆性恒星运动方向的机制提供了见解,而且还有助于理解动物自主行为的基本机制。此外,它们将为开发完全自主的机器人铺平道路,该机器人可以自行做出决定并在各种情况下适应性地移动。

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