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首页> 外文期刊>Lab on a chip >On-chip magnetically actuated robot with ultrasonic vibration for single cell manipulations
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On-chip magnetically actuated robot with ultrasonic vibration for single cell manipulations

机译:带有超声波振动的片上磁控机器人,用于单细胞操作

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摘要

This paper presents an innovative driving method for an on-chip robot actuated by permanent magnets in a microfluidic chip. A piezoelectric ceramic is applied to induce ultrasonic vibration to the microfluidic chip and the high-frequency vibration reduces the effective friction on the MMT significantly. As a result, we achieved 1.1 micrometre positioning accuracy of the microrobot, which is 100 times higher accuracy than without vibration. The response speed is also improved and the microrobot can be actuated with a speed of 5.5 mm s~(-1) in 3 degrees of freedom. The novelty of the ultrasonic vibration appears in the output force as well. Contrary to the reduction of friction on the microrobot, the output force increased twice as much by the ultrasonic vibration. Using this high accuracy, high speed, and high power microrobot, swine oocyte manipulations are presented in a microfluidic chip.
机译:本文提出了一种由微流控芯片中的永磁体驱动的片上机器人的创新驱动方法。压电陶瓷被施加到微流体芯片上引起超声振动,并且高频振动显着降低了MMT上的有效摩擦。结果,我们实现了微型机器人的1.1微米定位精度,这比没有振动的精度高100倍。响应速度也得到提高,微型机器人可以在3个自由度内以5.5 mm s〜(-1)的速度进行致动。超声波振动的新颖性也出现在输出力中。与减小微型机器人上的摩擦相反,超声振动使输出力增加了两倍。使用这种高精度,高速和高功率的微型机器人,猪卵母细胞的操作就可以在微流控芯片中实现。

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