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首页> 外文期刊>Cytometry, Part A: the journal of the International Society for Analytical Cytology >Practical Guidelines for Optimization and Characterization of the Beckman Coulter CytoFLEX (TM) Platform
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Practical Guidelines for Optimization and Characterization of the Beckman Coulter CytoFLEX (TM) Platform

机译:贝克曼Coulter Cytoflex(TM)平台优化和表征的实用指南

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摘要

Cytometer characterization is critical to define operational bounds within which the data generated are reliable and reproducible. Existing instrument optimization and characterization protocols were developed for cytometers relying on photomultiplier tubes (PMTs) for photon detection. Recently, instrument manufacturers have begun incorporating avalanche photodiodes (APDs) in place of PMTs. Differences in noise and signal amplification properties of the two detector types make many of the established PMT characterization protocols inappropriate for APD-based instruments. In this article, we tested (three machines on two different sites) a variety of approaches to determine the best method for APD optimization on the Beckman Coulter CytoFLEX (TM) (CytoFLEX). From this, we propose easy-to-implement guidelines for CytoFLEX characterization and operation. These protocols are not designed to compare APD versus PMT based systems, nor are they designed to directly compare different CytoFlex instruments. Following these protocols will allow CytoFLEX users to characterize their instruments and help to identify optimized settings that allow for the generation of consistent and reproducible data. (c) 2020 International Society for Advancement of Cytometry
机译:细胞仪表征对于定义所产生的数据的操作界限至关重要。开发了现有的仪器优化和表征方案,用于依赖于光电倍增管(PMT)进行光子检测的细胞计。最近,仪器制造商已经开始将雪崩光电二极管(APDS)纳入PMTS。两个检测器类型的噪声和信号放大特性的差异使得许多已建立的PMT表征协议不适合基于APD的仪器。在本文中,我们测试了(两种不同的网站上的三台机器)各种方法来确定Beckman Coulter cytoflex(TM)(Cytoflex)上的APD优化的最佳方法。由此,我们提出了易于实施的CytoFlex表征和操作指南。这些协议不设计用于比较APD与PMT的系统,也不设计为直接比较不同的Cytoflex仪器。以下这些协议将允许Cytoflex用户对其仪器进行特征,并帮助识别允许生成一致和可再现数据的优化设置。 (c)2020国际促进细胞计中的国际社会

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