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A PHYSIOLOGIST'S PERSPECTIVE ON ROBOTIC EXOSKELETONS FOR HUMAN LOCOMOTION

机译:生理学家对人类运动的机器人外骨骼的看法

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摘要

Technological advances in robotic hardware and software have enabled powered exoskele-tons to move from science fiction to the real world. The objective of this article is to emphasize two main points for future research. First, the design of future devices could be improved by exploiting biomechanical principles of animal locomotion. Two goals in exoskeleton research could particularly benefit from additional physiological perspective: (ⅰ) reduction in the metabolic energy expenditure of the user while wearing the device, and (ⅱ) minimization of the power requirements for actuating the exoskeleton. Second, a reciprocal potential exists for robotic exoskeletons to advance our understanding of human locomotor physiology. Experimental data from humans walking and running with robotic exoskeletons could provide important insight into the metabolic cost of locomotion that is impossible to gain with other methods. Given the mutual benefits of collaboration, it is imperative that engineers and physiologists work together in future studies on robotic exoskeletons for human locomotion.
机译:机器人硬件和软件的技术进步已使动力外骨骼从科幻小说转变为现实世界。本文的目的是强调未来研究的两个要点。首先,可以通过利用动物运动的生物力学原理来改进未来设备的设计。从其他生理学角度来看,外骨骼研究的两个目标可能会特别受益:( wearing)减少佩戴设备时用户的代谢能量消耗,以及(ⅱ)最小化启动外骨骼的功率要求。其次,机器人外骨骼具有互惠的潜力,可以增进我们对人类运动生理的理解。来自人类步行和跑步时使用机器人外骨骼的实验数据可以提供重要的洞察力,以了解其他方法无法获得的运动代谢成本。鉴于协作的互惠互利,当务之急是工程师和生理学家在人类外骨骼机器人外骨骼的未来研究中共同努力。

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