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流式细胞仪本底、信噪比和动态范围的确定:仪器特征化和标准化的新实用方法。

Determination of background, signal-to-noise, and dynamic range of a flow cytometer: A novel practical method for instrument characterization and standardization.

机构信息

Department of Cell Biology, German Rheumatism Research Center, Leibniz Institute, Berlin, Germany.

Berlin-Brandenburg School for Regenerative Therapies (BSRT), Berlin, Germany.

出版信息

Cytometry A. 2017 Nov;91(11):1104-1114. doi: 10.1002/cyto.a.23250. Epub 2017 Sep 27.

DOI:10.1002/cyto.a.23250
PMID:28960720
Abstract

A well-defined scale calibration in flow cytometry can improve many aspects of data acquisition such as cytometer setup, instrument comparison and sample comparison. The theory for scale calibration was proposed by Steen over two decades ago, but it has never been put into regular use due to the lack of a widely available precision light source. The introduction of such a light source, the quantiFlash , gave this possibility. Here, we describe how this light source can be used to characterize a cytometer's PMT performance. We, therefore, characterized the instrument's response over the entire PMT voltage range. As a consequence, we propose a practical method to characterize a cytometer's signal-to-noise ratio (SNR) and dynamic range (DNR). This allows the selection of a voltage/gain corresponding to a PMT's maximum efficiency and hence the lowest electronic noise, which can help with experiment design. We further introduced a decibel (dB) scale for the presentation of SNR and DNR values. SNR and DNR are stand-alone values that allow the direct comparison of different instruments. Finally, with this method, it becomes clear that increased SNR comes at the expense of DNR and thus the limiting factor of modern cytometers is the DNR. © 2017 International Society for Advancement of Cytometry.

摘要

流式细胞术的良好定义标度校准可以改善数据采集的许多方面,例如细胞仪设置、仪器比较和样品比较。Steen 二十多年前提出了标度校准的理论,但由于缺乏广泛可用的精密光源,该理论从未得到常规应用。这种光源,即 quantiFlash 的引入,提供了这种可能性。在这里,我们描述了如何使用这种光源来描述细胞仪的 PMT 性能。因此,我们在整个 PMT 电压范围内描述了仪器的响应。因此,我们提出了一种实用的方法来描述细胞仪的信噪比 (SNR) 和动态范围 (DNR)。这允许选择与 PMT 的最大效率相对应的电压/增益,从而降低电子噪声,这有助于实验设计。我们进一步引入了用于表示 SNR 和 DNR 值的分贝 (dB) 标度。SNR 和 DNR 是独立的值,允许对不同仪器进行直接比较。最后,通过这种方法,可以清楚地看出,增加 SNR 是以 DNR 为代价的,因此现代细胞仪的限制因素是 DNR。©2017 国际细胞分析协会。

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