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mas5.0 (microarray suite software 5.0)  (Thermo Fisher)


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    Structured Review

    Thermo Fisher mas5.0 (microarray suite software 5.0)
    Gene expression patterns of DDX5 and GAPDH from 66 Affymetrix microarray chips using three different probe level quantile normalizations . The gene expression patterns of two internal controls, DDX5 (A) and GAPDH (B: 212581_x_at and C: M33197_3_at) from Affymetrix chips by <t>MAS5</t> (marked by diamonds), RMA (marked by squares) and GC-RMA (marked by triangles) probe level quantile normalizations. Normalization was performed per chip and per gene using GeneSpring ® 7.3 software. The expression levels of these two internal controls were related to the median of the intensities on the 66 chips. The DDX5 expression patterns in each chip did not significantly alter compared to greater variation in GAPDH .
    Mas5.0 (Microarray Suite Software 5.0), supplied by Thermo Fisher, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/mas5.0 (microarray suite software 5.0)/product/Thermo Fisher
    Average 90 stars, based on 1 article reviews
    mas5.0 (microarray suite software 5.0) - by Bioz Stars, 2026-03
    90/100 stars

    Images

    1) Product Images from "Selection of DDX5 as a novel internal control for Q-RT-PCR from microarray data using a block bootstrap re-sampling scheme"

    Article Title: Selection of DDX5 as a novel internal control for Q-RT-PCR from microarray data using a block bootstrap re-sampling scheme

    Journal: BMC Genomics

    doi: 10.1186/1471-2164-8-140

    Gene expression patterns of DDX5 and GAPDH from 66 Affymetrix microarray chips using three different probe level quantile normalizations . The gene expression patterns of two internal controls, DDX5 (A) and GAPDH (B: 212581_x_at and C: M33197_3_at) from Affymetrix chips by MAS5 (marked by diamonds), RMA (marked by squares) and GC-RMA (marked by triangles) probe level quantile normalizations. Normalization was performed per chip and per gene using GeneSpring ® 7.3 software. The expression levels of these two internal controls were related to the median of the intensities on the 66 chips. The DDX5 expression patterns in each chip did not significantly alter compared to greater variation in GAPDH .
    Figure Legend Snippet: Gene expression patterns of DDX5 and GAPDH from 66 Affymetrix microarray chips using three different probe level quantile normalizations . The gene expression patterns of two internal controls, DDX5 (A) and GAPDH (B: 212581_x_at and C: M33197_3_at) from Affymetrix chips by MAS5 (marked by diamonds), RMA (marked by squares) and GC-RMA (marked by triangles) probe level quantile normalizations. Normalization was performed per chip and per gene using GeneSpring ® 7.3 software. The expression levels of these two internal controls were related to the median of the intensities on the 66 chips. The DDX5 expression patterns in each chip did not significantly alter compared to greater variation in GAPDH .

    Techniques Used: Expressing, Microarray, Software



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    Gene expression patterns of DDX5 and GAPDH from 66 Affymetrix microarray chips using three different probe level quantile normalizations . The gene expression patterns of two internal controls, DDX5 (A) and GAPDH (B: 212581_x_at and C: M33197_3_at) from Affymetrix chips by <t>MAS5</t> (marked by diamonds), RMA (marked by squares) and GC-RMA (marked by triangles) probe level quantile normalizations. Normalization was performed per chip and per gene using GeneSpring ® 7.3 software. The expression levels of these two internal controls were related to the median of the intensities on the 66 chips. The DDX5 expression patterns in each chip did not significantly alter compared to greater variation in GAPDH .
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    Image Search Results


    Gene expression patterns of DDX5 and GAPDH from 66 Affymetrix microarray chips using three different probe level quantile normalizations . The gene expression patterns of two internal controls, DDX5 (A) and GAPDH (B: 212581_x_at and C: M33197_3_at) from Affymetrix chips by MAS5 (marked by diamonds), RMA (marked by squares) and GC-RMA (marked by triangles) probe level quantile normalizations. Normalization was performed per chip and per gene using GeneSpring ® 7.3 software. The expression levels of these two internal controls were related to the median of the intensities on the 66 chips. The DDX5 expression patterns in each chip did not significantly alter compared to greater variation in GAPDH .

    Journal: BMC Genomics

    Article Title: Selection of DDX5 as a novel internal control for Q-RT-PCR from microarray data using a block bootstrap re-sampling scheme

    doi: 10.1186/1471-2164-8-140

    Figure Lengend Snippet: Gene expression patterns of DDX5 and GAPDH from 66 Affymetrix microarray chips using three different probe level quantile normalizations . The gene expression patterns of two internal controls, DDX5 (A) and GAPDH (B: 212581_x_at and C: M33197_3_at) from Affymetrix chips by MAS5 (marked by diamonds), RMA (marked by squares) and GC-RMA (marked by triangles) probe level quantile normalizations. Normalization was performed per chip and per gene using GeneSpring ® 7.3 software. The expression levels of these two internal controls were related to the median of the intensities on the 66 chips. The DDX5 expression patterns in each chip did not significantly alter compared to greater variation in GAPDH .

    Article Snippet: The images were transformed into text files as intensity information using the MAS5.0 (Microarray Suite software 5.0) developed by Affymetrix [ , ].

    Techniques: Expressing, Microarray, Software