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Development of multifunctional materials exhibiting distributed sensing and actuation inspired by fish

机译:开发出受鱼类启发的具有分布式传感和驱动功能的多功能材料

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This manuscript is an overview of the research that is currently being performed as part of a 2009 NSF Office of Emerging Frontiers in Research and Innnovation (EFRI) grant on BioSensing and BioActuation (BSBA). The objectives of this multi-university collaborative research are to achieve a greater understanding of the hierarchical organization and structure of the sensory, muscular, and control systems of fish, and to develop advanced biologically-inspired material systems having distributed sensing, actuation, and intelligent control. New experimental apparatus have been developed for performing experiments involving live fish and robotic devices, and new bio-inspired haircell sensors and artificial muscles are being developed using carbonaceous nanomaterials, bio-derived molecules, and composite technology. Results demonstrating flow sensing and actuation are presented.
机译:这份手稿是该研究的概述,该研究是作为2009 NSF研究与创新前沿研究办公室(EFRI)对生物传感和生物致动(BSBA)资助的一部分而进行的。这项多大学合作研究的目标是对鱼类的感觉,肌肉和控制系统的层次结构和结构有更深入的了解,并开发具有分布式传感,驱动和智能功能的先进的生物启发性材料系统。控制。已经开发出用于进行涉及活鱼和机器人设备的实验的新实验设备,并且正在使用碳纳米材料,生物来源的分子和复合技术开发新的具有生物启发性的毛细胞传感器和人造肌肉。展示了表明流量感测和致动的结果。

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