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A new method to achieve tens of nm axial super-localization based on conical diffraction PSF shaping

机译:基于锥形衍射PSF整形实现数十纳米轴向超定位的新方法

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We present a method for Z-super-localization in fluorescence microscopy, based on conical diffraction. By using a thin biaxial crystal, the Point Spread Function (PSF) shape of an objective is made to depend strongly on the z coordinate. This z dependence is then exploited to localize fluorescent emitters axially with a great precision. We study how this method can be used for single molecule imaging with a global assessment by Fisher information analysis. Preliminary experiments demonstrate that this technique can obtain resolutions of tens of nm with the use of high NA objectives.
机译:我们提出了一种基于锥形衍射的荧光显微镜中的Z超定位方法。通过使用薄的双轴晶体,可以使物镜的点扩展函数(PSF)形状强烈依赖于z坐标。然后利用该z依赖性来高精度地轴向定位荧光发射器。我们研究如何通过Fisher信息分析对这种方法进行整体评估,以用于单分子成像。初步实验表明,该技术可通过使用高NA物镜获得数十纳米的分辨率。

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