纳米机器人学
趋磁细菌
推进
计算机科学
磁小体
纳米技术
小型化
工程类
材料科学
航空航天工程
冶金
磁铁矿
作者
Sylvain Martel,Mahmood Mohammadi,Ouajdi Felfoul,Zhao Lu,Pierre Pouponneau
标识
DOI:10.1177/0278364908100924
摘要
Although nanorobots may play critical roles for many applications in the human body, such as targeting tumoral lesions for therapeutic purposes, miniaturization of the power source with an effective onboard controllable propulsion and steering system have prevented the implementation of such mobile robots. Here, we show that the flagellated nanomotors combined with the nanometer-sized magnetosomes of a single magnetotactic bacterium can be used as an effective integrated propulsion and steering system for devices, such as nanorobots, designed for targeting locations only accessible through the smallest capillaries in humans while being visible for tracking and monitoring purposes using modern medical imaging modalities such as magnetic resonance imaging. Through directional and magnetic field intensities, the displacement speeds, directions, and behaviors of swarms of these bacterial actuators can be controlled from an external computer.
科研通智能强力驱动
Strongly Powered by AbleSci AI