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Empirical Evaluation of a New Method for Calculating Signal-to-Noise Ratio for Microarray Data Analysis

机译:一种计算微阵列数据分析信噪比的新方法的经验评估

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摘要

Signal-to-noise-ratio (SNR) thresholds for microarray data analysis were experimentally determined with an oligonucleotide array that contained perfect-match (PM) and mismatch (MM) probes based upon four genes from Shewanella oneidensis MR-1. A new SNR calculation, called the signal-to-both-standard-deviations ratio (SSDR), was developed and evaluated, along with other two methods, the signal-to-standard-deviation ratio (SSR) and the signal-to-background ratio (SBR). At a low stringency, the thresholds of the SSR, SBR, and SSDR were 2.5, 1.60, and 0.80 with an oligonucleotide and a PCR amplicon as target templates and 2.0, 1.60, and 0.70 with genomic DNAs as target templates. Slightly higher thresholds were obtained under high-stringency conditions. The thresholds of the SSR and SSDR decreased with an increase in the complexity of targets (e.g., target types) and the presence of background DNA and a decrease in the compositions of targets, while the SBR remained unchanged in all situations. The lowest percentage of false positives and false negatives was observed with the SSDR calculation method, suggesting that it may be a better SNR calculation for more accurate determination of SNR thresholds. Positive spots identified by SNR thresholds were verified by the Student t test, and consistent results were observed. This study provides general guidance for users to select appropriate SNR thresholds for different samples under different hybridization conditions.
机译:微阵列数据分析的信噪比(SNR)阈值是通过寡核苷酸阵列实验确定的,该寡核苷酸阵列包含完全匹配(PM)和错配(MM)探针,该探针基于来自印度产希瓦氏菌MR-1的四个基因。开发并评估了一种新的SNR计算方法,称为信号与标准偏差之比(SSDR),以及其他两种方法,即信号与标准偏差之比(SSR)和信号与标准偏差之比。背景比率(SBR)。在低严格性下,以寡核苷酸和PCR扩增子为目标模板的SSR,SBR和SSDR的阈值为2.5、1.60和0.80,以基因组DNA为目标模板的阈值为2.0、1.60和0.70。在高严格条件下获得了略高的阈值。随着靶标(例如靶标类型)的复杂性的增加和背景DNA的存在以及靶标组成的减少,SSR和SSDR的阈值降低,而SBR在所有情况下均保持不变。使用SSDR计算方法观察到的假阳性和假阴性百分比最低,这表明它对于更好地确定SNR阈值可能是更好的SNR计算。通过SNR阈值确定的阳性斑点通过Student t检验进行了验证,并观察到一致的结果。这项研究为用户在不同杂交条件下为不同样品选择合适的SNR阈值提供了一般指导。

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