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Characterization of Oscillating Nano Knife for Single Cell Cutting by Nanorobotic Manipulation System inside ESEM

机译:ESEM内纳米菌种操作系统振动纳米刀振荡纳米刀的特征

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In this paper, a novel oscillating nano knife for single cell cutting at its native state was proposed. The Tian knife with a small edge angle 50 was fabricated from a commercial AFM cantilever by focused ion beam (FIB) etching. The spring constant of the nano knife was calibrated by nanorobotic manipulation method. A piezo actuator was employed to generate the vibration of the nano knife. The oscillating amplitude response to the applied voltage was calculated based on the realtime image observation. Single yeast cell (W303) cutting using oscillating nano knife was performed based on the nanorobotic manipulation system inside an environment-SEM. The maximum cutting forces and the slices angle were measured from the deformation of the nano knife beam and the single cell. The result showed the oscillating nano knife was capable and effective for single cell cutting task.
机译:本文提出了一种在其天然状态下为单细胞切割的新型振动纳米刀。具有小边角50的田刀通过聚焦离子束(FIB)蚀刻制成商业AFM悬臂。纳米刀的弹簧常数被纳米毒液操纵方法校准。采用压电致动器产生纳米刀的振动。基于实时图像观察计算对施加电压的振荡幅度响应。使用振荡纳米刀切割单酵母细胞(W303)切割,基于环境-EM-SEM内的纳米毒液操纵系统进行。从纳米刀梁和单个细胞的变形测量​​最大切割力和切片角。结果表明,振荡纳米刀能够对单细胞切割任务有效。

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