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Design of experiments for the optimization of SOFI super-resolution microscopy imaging

机译:优化SOFI超分辨率显微镜成像的实验设计

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摘要

Super-resolution optical fluctuation imaging (SOFI) is a well-known super-resolution technique appreciated for its versatility and broad applicability. However, even though an extended theoretical description is available, it is still not fully understood how the interplay between different experimental parameters influences the quality of a SOFI image. We investigated the relationship between five experimental parameters (measurement time, on-time ton, off-time toff, probe brightness, and out of focus background) and the quality of the super-resolved images they yielded, expressed as Signal to Noise Ratio (SNR). Empirical relationships were modeled for second- and third-order SOFI using data simulated according to a D-Optimal design of experiments, which is an ad-hoc design built to reduce the experimental load when the total number of trials to be conducted becomes too high for practical applications. This approach proves to be more reliable and efficient for parameter optimization compared to the more classical parameter by parameter approach. Our results indicate that the best image quality is achieved for the fastest emitter blinking (lowest ton and toff), lowest background level, and the highest measurement duration, while the brightness variation does not affect the quality in a statistically significant way within the investigated range. However, when the ranges spanned by the parameters are constrained, a different set of optimal conditions may arise. For example, for second-order SOFI, we identified situations in which the increase of toff can be beneficial to SNR, such as when the measurement duration is long enough. In general, optimal values of ton and toff have been found to be highly dependent from each other and from the measurement duration.
机译:超分辨率光波动成像(SOFI)是一种众所周知的超分辨率技术,其具有通用性和广泛的适用性。然而,尽管可以使用延长的理论描述,但仍然没有完全理解不同实验参数之间的相互作用如何影响SOFI图像的质量。我们调查了五个实验参数(测量时间,随机时间,off-time Toff,探测亮度和焦点背景外)的关系,以及它们产生的超分辨率图像的质量表示为信噪比( SNR)。使用根据D-Optimal设计模拟的数据模拟的数据模拟了经验关系,该数据是一种建造的Ad-Hoc设计,以减少实验负载,当要进行的试验的总数变得太高时对于实际应用。与参数方法更加经典的参数相比,该方法证明参数优化更加可靠,有效。我们的结果表明,最佳的图像质量是为最快的发射器闪烁(最低吨和Toff),最低背景水平和最高测量持续时间的最佳图像质量,而亮度变化不会在调查范围内以统计上显着的方式影响质量。然而,当参数跨越的范围被约束时,可能出现不同的一组最佳条件。例如,对于二阶SOFI,我们确定了Toff的增加可以有利于SNR的情况,例如当测量持续时间足够长时。通常,已经发现吨和蒂罗夫的最佳值是高度依赖于彼此和测量持续时间。

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