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首页> 外文期刊>Journal of Microscopy >Measurement of the three-dimensional microscope point spread function using a Shack-Hartmann wavefront sensor
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Measurement of the three-dimensional microscope point spread function using a Shack-Hartmann wavefront sensor

机译:使用Shack-Hartmann波前传感器测量三维显微镜点扩散函数

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We present a technique to measure the wavefront in the exit pupil of a microscope to determine the microscope's three-dimensional point spread function (PSF) experimentally. The wavefront yields the microscope PSF through a Fourier transform that models propagation of light from the exit pupil to the image plane. A Shack-Hartmann wavefront sensor is used to measure the wavefront shape by recording lateral displacements of a grid of focused spots created by a lenslet array. The displacement of each spot is related to the local wavefront slope. Thus, with appropriate sampling across the exit pupil, the entire wavefront can be reconstructed. This technique does not require the use of a sub-resolution object to obtain the three-dimensional microscope PSF. Consequently, larger, brighter fluorescent objects may be imaged, thereby reducing the requirements for detector sensitivity and leading to a three-fold increase in the axial range over which the PSF is measured. The Shack-Hartmann technique results in a description of the PSF as a continuous function whose sampling is not dependent on the size of the CCD pixels. The Shack-Hartmann sensor is not limited by the numerical aperture of the objective and can easily be calibrated to measure the PSF at any wavelength. [References: 38]
机译:我们提出一种技术来测量显微镜出瞳中的波前,以实验方式确定显微镜的三维点扩散函数(PSF)。波前通过傅里叶变换产生显微镜PSF,该模型对从出射光瞳到像平面的光传播进行建模。 Shack-Hartmann波前传感器用于通过记录由小透镜阵列创建的聚焦点网格的横向位移来测量波前形状。每个点的位移与局部波前斜率有关。因此,通过在出射光瞳上进行适当的采样,可以重建整个波前。此技术不需要使用子分辨率对象即可获得三维显微镜PSF。因此,可以对更大,更亮的荧光对象成像,从而降低了对检测器灵敏度的要求,并导致测量PSF的轴向范围增加了三倍。 Shack-Hartmann技术将PSF描述为一种连续函数,其采样不取决于CCD像素的大小。 Shack-Hartmann传感器不受物镜数值孔径的限制,可以很容易地进行校准以测量任何波长的PSF。 [参考:38]

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