Zhang Chen, Welsher Kevin
Department of Chemistry, Duke University, Durham, NC 27708, USA.
Entropy (Basel). 2021 Apr 22;23(5):498. doi: 10.3390/e23050498.
In this work, we present a 3D single-particle tracking system that can apply tailored sampling patterns to selectively extract photons that yield the most information for particle localization. We demonstrate that off-center sampling at locations predicted by Fisher information utilizes photons most efficiently. When performing localization in a single dimension, optimized off-center sampling patterns gave doubled precision compared to uniform sampling. A ~20% increase in precision compared to uniform sampling can be achieved when a similar off-center pattern is used in 3D localization. Here, we systematically investigated the photon efficiency of different emission patterns in a diffraction-limited system and achieved higher precision than uniform sampling. The ability to maximize information from the limited number of photons demonstrated here is critical for particle tracking applications in biological samples, where photons may be limited.
在这项工作中,我们展示了一种三维单粒子跟踪系统,该系统能够应用定制的采样模式,以选择性地提取对粒子定位产生最多信息的光子。我们证明,在由费舍尔信息预测的位置进行离中心采样能最有效地利用光子。在一维进行定位时,与均匀采样相比,优化的离中心采样模式使精度提高了一倍。在三维定位中使用类似的离中心模式时,与均匀采样相比,精度可提高约20%。在这里,我们系统地研究了衍射极限系统中不同发射模式的光子效率,并实现了比均匀采样更高的精度。本文所展示的从有限数量光子中最大化信息的能力,对于生物样本中光子可能受限的粒子跟踪应用至关重要。