论文标题

在色度成像中的定位精度

Localization precision in chromatic multifocal imaging

论文作者

Amin, M. Junaid, Petry, Sabine, Shaevitz, Joshua W., Yang, Haw

论文摘要

多焦点显微镜可快速获取微观3D图像。使用多焦点光学光学元件使这是可能的,但是这会诱导色散效应,从而影响点扩散功能,从而影响图像质量和单分子定位精度。为了最大程度地减少这种效果,研究人员使用窄带排放过滤器。但是,到目前为止,在此类系统中选择最佳发射滤波器带宽尚不清楚。这项工作提出了一个理论框架,以研究点发射极的定位精度如何受发射滤波器带宽的影响。我们计算使用色焦点显微镜成像的单个发射极的3D位置的Cramér-rao下限。结果表明,尽管光子吞吐量增加,但由于光子吞吐量增加,定位精度随着较大的发射滤波器带宽而提高。这项研究提供了一个框架,用于最佳设计色度多焦点光学器件,并作为解释结果的理论基础。

Multifocal microscopy affords fast acquisition of microscopic 3D images. This is made possible using a multifocal grating optic, however this induces chromatic dispersion effects into the point spread function impacting image quality and single-molecule localization precision. To minimize this effect, researchers use narrow-band emission filters. However, the choice of optimal emission filter bandwidth in such systems is, thus far, unclear. This work presents a theoretical framework to investigate how the localization precision of a point emitter is affected by the emission filter bandwidth. We calculate the Cramér-Rao lower bound for the 3D position of a single emitter imaged using a chromatic multifocal microscope. Results show that the localization precision improves with broader emission filter bandwidth due to increased photon throughput, despite a larger chromatic dispersion. This study provides a framework for optimally designing chromatic multifocal optics and serves as a theoretical foundation for interpretting results.

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