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Cracking the egg : virtual embryogenesis of real robots

机译:破蛋:真实机器人的虚拟胚胎发生

摘要

All multicellular living beings are created from a single cell. A developmental process, called embryogenesis, takes this first fertilized cell down a complex path of reproduction, migration and specialization into a complex organism adapted to its environment. In most cases, the first steps of the embryogenesis are taking place into a protected environment such as in an egg or in-utero. Starting from this observation, we propose a new approach to the generation of real robots, strongly inspired by living systems. Our robots are composed of tens of specialized cells, grown from a single cell using a bio-inspired virtual developmental process. Virtual cells, controlled by gene regulatory networks, divide, migrate and specialize to produce the robot's body plan (morphology), and then the robot is manually built from this plan. Because the robot is as easy to assemble as LEGO, the building process could be easily automated.
机译:所有多细胞生物都是由单个细胞创建的。一个称为胚胎发生的发育过程,使第一个受精细胞沿着繁复的繁殖,迁移和专化途径进入适应其环境的复杂生物体。在大多数情况下,胚胎发生的第一步是在受保护的环境中进行,例如在卵或子宫内。从这一观察出发,我们提出了一种新的方法来产生真实的机器人,这种方法受到生命系统的强烈启发。我们的机器人由数十个专门的细胞组成,这些细胞是使用生物启发的虚拟发育过程从单个细胞中生长而来的。由基因调控网络控制的虚拟细胞分裂,迁移并专门产生机器人的身体计划(形态),然后根据该计划手动构建机器人。由于该机器人的组装过程与LEGO一样容易,因此构建过程可以轻松实现自动化。

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