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Atomic force microscope with integrated optical microscope for biological applications

机译:带有集成光学显微镜的原子力显微镜,用于生物应用

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摘要

Since atomic force microscopy (AFM) is capable of imaging nonconducting surfaces, the technique holds great promises for high‐resolution imaging of biological specimens. A disadvantage of most AFMs is the fact that the relatively large sample surface has to be scanned multiple times to pinpoint a specific biological object of interest. Here an AFM is presented which has an incorporated inverted optical microscope. The optical image from the optical microscope is not obscured by the cantilever. Using a XY stage to move the sample, an object is selected with the optical microscope and an AFM image of the selected object can be obtained. AFM images of chromosomes and K562 cells show the potential of the microscope. The microscope further enables a direct comparison between optically observed features and topological information obtained from AFM images.
机译:由于原子力显微镜(AFM)能够对非导电表面进行成像,因此该技术对生物标本的高分辨率成像具有广阔的前景。大多数原子力显微镜的缺点是必须对较大的样品表面进行多次扫描以查明感兴趣的特定生物学对象。这里介绍了一种AFM,它具有内置的倒置光学显微镜。来自光学显微镜的光学图像不会被悬臂遮挡。使用XY载物台移动样品,用光学显微镜选择一个对象,并可以获得所选对象的AFM图像。染色体和K562细胞的AFM图像显示了显微镜的潜力。显微镜还可以直接比较光学观察到的特征和从AFM图像获得的拓扑信息。

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