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multivariate function of the jmp statistical program  (SAS institute)


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    SAS institute multivariate function of the jmp statistical program
    Relationships <t>between</t> <t>bioenergetic</t> parameters from the mitochondrial stress test (MST) with and without doxorubicin. Using the data shown in a correlation analysis was performed using the <t>JMP</t> statistical program to assess the linear relationships between the bioenergetic parameters derived from the MST with and without 25 μM Dox. The bivariate plots of basal OCR and ATP-linked OCR (A), reserve capacity and maximal OCR (B), basal OCR and maximal OCR (C), ATP-linked OCR and maximal OCR (D) and basal OCR and reserve capacity (E) are shown. The r values, the measure of strength of linear relationships and results of the significance tests for these data are reported in .
    Multivariate Function Of The Jmp Statistical Program, supplied by SAS institute, 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/multivariate function of the jmp statistical program/product/SAS institute
    Average 90 stars, based on 1 article reviews
    multivariate function of the jmp statistical program - by Bioz Stars, 2026-05
    90/100 stars

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    1) Product Images from "A precision medicine approach to defining the impact of doxorubicin on the bioenergetic-metabolite interactome in human platelets"

    Article Title: A precision medicine approach to defining the impact of doxorubicin on the bioenergetic-metabolite interactome in human platelets

    Journal: Redox Biology

    doi: 10.1016/j.redox.2019.101311

    Relationships between bioenergetic parameters from the mitochondrial stress test (MST) with and without doxorubicin. Using the data shown in a correlation analysis was performed using the JMP statistical program to assess the linear relationships between the bioenergetic parameters derived from the MST with and without 25 μM Dox. The bivariate plots of basal OCR and ATP-linked OCR (A), reserve capacity and maximal OCR (B), basal OCR and maximal OCR (C), ATP-linked OCR and maximal OCR (D) and basal OCR and reserve capacity (E) are shown. The r values, the measure of strength of linear relationships and results of the significance tests for these data are reported in .
    Figure Legend Snippet: Relationships between bioenergetic parameters from the mitochondrial stress test (MST) with and without doxorubicin. Using the data shown in a correlation analysis was performed using the JMP statistical program to assess the linear relationships between the bioenergetic parameters derived from the MST with and without 25 μM Dox. The bivariate plots of basal OCR and ATP-linked OCR (A), reserve capacity and maximal OCR (B), basal OCR and maximal OCR (C), ATP-linked OCR and maximal OCR (D) and basal OCR and reserve capacity (E) are shown. The r values, the measure of strength of linear relationships and results of the significance tests for these data are reported in .

    Techniques Used: Derivative Assay



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    SAS institute multivariate function of the jmp statistical program
    Relationships <t>between</t> <t>bioenergetic</t> parameters from the mitochondrial stress test (MST) with and without doxorubicin. Using the data shown in a correlation analysis was performed using the <t>JMP</t> statistical program to assess the linear relationships between the bioenergetic parameters derived from the MST with and without 25 μM Dox. The bivariate plots of basal OCR and ATP-linked OCR (A), reserve capacity and maximal OCR (B), basal OCR and maximal OCR (C), ATP-linked OCR and maximal OCR (D) and basal OCR and reserve capacity (E) are shown. The r values, the measure of strength of linear relationships and results of the significance tests for these data are reported in .
    Multivariate Function Of The Jmp Statistical Program, supplied by SAS institute, 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/multivariate function of the jmp statistical program/product/SAS institute
    Average 90 stars, based on 1 article reviews
    multivariate function of the jmp statistical program - by Bioz Stars, 2026-05
    90/100 stars
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    Relationships between bioenergetic parameters from the mitochondrial stress test (MST) with and without doxorubicin. Using the data shown in a correlation analysis was performed using the JMP statistical program to assess the linear relationships between the bioenergetic parameters derived from the MST with and without 25 μM Dox. The bivariate plots of basal OCR and ATP-linked OCR (A), reserve capacity and maximal OCR (B), basal OCR and maximal OCR (C), ATP-linked OCR and maximal OCR (D) and basal OCR and reserve capacity (E) are shown. The r values, the measure of strength of linear relationships and results of the significance tests for these data are reported in .

    Journal: Redox Biology

    Article Title: A precision medicine approach to defining the impact of doxorubicin on the bioenergetic-metabolite interactome in human platelets

    doi: 10.1016/j.redox.2019.101311

    Figure Lengend Snippet: Relationships between bioenergetic parameters from the mitochondrial stress test (MST) with and without doxorubicin. Using the data shown in a correlation analysis was performed using the JMP statistical program to assess the linear relationships between the bioenergetic parameters derived from the MST with and without 25 μM Dox. The bivariate plots of basal OCR and ATP-linked OCR (A), reserve capacity and maximal OCR (B), basal OCR and maximal OCR (C), ATP-linked OCR and maximal OCR (D) and basal OCR and reserve capacity (E) are shown. The r values, the measure of strength of linear relationships and results of the significance tests for these data are reported in .

    Article Snippet: The linear correlation between multiple pairs of bioenergetic parameters were determined using the multivariate function of the JMP statistical program (JMP®, Version 13, SAS Institute Inc., Cary, NC).

    Techniques: Derivative Assay