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Optimising performance of a confocal fluorescence microscope with a differential pinhole

机译:具有差分针孔的共聚焦荧光显微镜的性能优化

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摘要

The signal-to-noise ratio (SNR)-resolution trade-off is of great importance to bio-imaging applications where the aim is to image the sample using as little light as possible without significantly sacrificing image quality. In this paper the inherent SNR-resolution tradeoff in Confocal Fluorescence Microscopy (CFM) systems is presented by means of an effective tradeoff curve. A CFM system that employs a differential pinhole detection scheme has recently been shown to offer increased resolution, but at the expense of SNR. An optimum profile for the differential pinhole is identified in this paper that offers improved performance over a conventional (circular pinhole) system. The performance enhancement is illustrated through computer simulation.
机译:信噪比(SNR)分辨率的折衷对于生物成像应用非常重要,在生物成像应用中,目标是使用尽可能少的光对样本成像,而又不会显着牺牲图像质量。本文通过有效的折衷曲线介绍了共聚焦荧光显微镜(CFM)系统固有的SNR分辨率折衷。最近已证明采用差分针孔检测方案的CFM系统可提供更高的分辨率,但会以SNR为代价。本文确定了差分针孔的最佳轮廓,该轮廓可以提供优于常规(圆形针孔)系统的性能。通过计算机仿真来说明性能增强。

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