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Wide-area scanner for high-speed atomic force microscopy

机译:用于高速原子力显微镜的广域扫描仪

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摘要

High-speed atomic force microscopy (HS-AFM) has recently been established. The dynamic processes and structural dynamics of protein molecules in action have been successfully visualized using HS-AFM. However, its maximum scan ranges in the X- and Y-directions have been limited to ∼1 μm and ∼4 μm, respectively, making it infeasible to observe the dynamics of much larger samples, including live cells. Here, we develop a wide-area scanner with a maximum XY scan range of ∼46 × 46 μm2 by magnifying the displacements of stack piezoelectric actuators using a leverage mechanism. Mechanical vibrations produced by fast displacement of the X-scanner are suppressed by a combination of feed-forward inverse compensation and the use of triangular scan signals with rounded vertices. As a result, the scan speed in the X-direction reaches 6.3 mm/s even for a scan size as large as ∼40 μm. The nonlinearity of the X- and Y-piezoelectric actuators' displacements that arises from their hysteresis is eliminated by polynomial-approximation-based open-loop control. The interference between the X- and Y-scanners is also eliminated by the same technique. The usefulness of this wide-area scanner is demonstrated by video imaging of dynamic processes in live bacterial and eukaryotic cells. © 2013 AIP Publishing LLC.
机译:最近建立了高速原子力显微镜(HS-AFM)。使用HS-AFM已成功可视化了蛋白质分子的动态过程和结构动力学。但是,其在X方向和Y方向上的最大扫描范围分别被限制为〜1μm和〜4μm,这使得观察包括活细胞在内的更大样本的动力学变得不可行。在这里,我们通过利用杠杆机制放大堆叠压电致动器的位移,开发出了最大XY扫描范围为〜46×46μm2的广域扫描仪。 X扫描器快速位移产生的机械振动可以通过前馈逆补偿和带有圆角顶点的三角扫描信号的组合来抑制。结果,即使扫描尺寸约为40μm,X方向的扫描速度也达到6.3 mm / s。通过基于多项式逼近的开环控制,消除了X和Y压电执行器的磁滞引起的非线性。 X和Y扫描仪之间的干扰也可以通过相同的技术消除。通过在活细菌和真核细胞中动态过程的视频成像,证明了这种广域扫描仪的实用性。 ©2013 AIP Publishing LLC。

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