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昆虫-机器混合系统。

Insect-machine hybrid system.

作者信息

Kolev Svetoslav, Massey Travis L, Abbeel Pieter, Maharbiz Michel M, Sato Hirotaka

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2013;2013:2816-9. doi: 10.1109/EMBC.2013.6610126.

Abstract

We demonstrated the remote control of insects in free flight via an implantable radio-equipped miniature neural stimulating system. This paper summarizes these results. The pronotum mounted system consisted of neural stimulators, muscular stimulators, a radio transceiver-equipped microcontroller and a microbattery. Flight initiation, cessation and elevation control were accomplished through neural stimulus of the brain which elicited, suppressed or modulated wing oscillation. Turns were triggered through the direct muscular stimulus of either of the basalar muscles. We characterized the response times, success rates, and free-flight trajectories elicited by our neural control systems in remotely-controlled beetles. We believe this type of technology will open the door to in-flight perturbation and recording of insect flight responses.

摘要

我们展示了通过植入式无线电微型神经刺激系统对自由飞行昆虫的远程控制。本文总结了这些结果。安装在前胸背板上的系统由神经刺激器、肌肉刺激器、配备无线电收发器的微控制器和微型电池组成。飞行的启动、停止和高度控制是通过对大脑的神经刺激来实现的,这种刺激引发、抑制或调节翅膀的振荡。转弯是通过对任一基底肌肉的直接肌肉刺激触发的。我们对神经控制系统在遥控甲虫中引发的响应时间、成功率和自由飞行轨迹进行了表征。我们相信这种技术将为昆虫飞行反应的飞行中扰动和记录打开大门。

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