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software package v. 9  (SYSTAT)


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    SYSTAT software package v. 9
    Software Package V. 9, supplied by SYSTAT, 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/software package v. 9/product/SYSTAT
    Average 90 stars, based on 1 article reviews
    software package v. 9 - by Bioz Stars, 2026-04
    90/100 stars

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    Figure 4. PCA over the 1H HR-MAS NMR fingerprints representing seasonal influence for major metabolites. NMR data were processed in TopSpin v3.6.3 software package and preprocessed in analysis of mixture <t>(AMIX)</t> v3.9.12 software package (Bruker BioSpin: https://www.bruker.com), PCA analysis was performed in the MetaboAnalyst v5.0 (https://www.metaboanalyst.ca/). Representations for discriminatory metabolites indicating main variables in the loading plot were manually produced in Microsoft PowerPoint v16.56 (https://officecdnm ac.microsoft.com), and the GIMP v2.10.24 software package (https://www.gimp.org) was used for final figure generation. PCA group legends: Br-April (Autumn), the month of April is mid-Autumn in Brazil; Br-Oct (Spring), October is early Spring in Brazil; Br-Dec (Autumn), the month of December is late-Spring in Brazil. Loading variables and metabolites: 1, kaempferol-3-O-dihexoside; 2, caffeoyl glucoside; 3, 3-O-caffeoylquinic acid; 4, 5-O-caffeoylquinic acid; 5, kingiside; 6, 8-epi-kingisidic acid; 7, (7α)-7-O-methylmorroniside; 8, (7β)-7- O-methylmorroniside; 9, alpigenoside; 14, fatty (linolenic) acid.
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    Figure 4. PCA over the 1H HR-MAS NMR fingerprints representing seasonal influence for major metabolites. NMR data were processed in TopSpin v3.6.3 software package and preprocessed in analysis of mixture <t>(AMIX)</t> v3.9.12 software package (Bruker BioSpin: https://www.bruker.com), PCA analysis was performed in the MetaboAnalyst v5.0 (https://www.metaboanalyst.ca/). Representations for discriminatory metabolites indicating main variables in the loading plot were manually produced in Microsoft PowerPoint v16.56 (https://officecdnm ac.microsoft.com), and the GIMP v2.10.24 software package (https://www.gimp.org) was used for final figure generation. PCA group legends: Br-April (Autumn), the month of April is mid-Autumn in Brazil; Br-Oct (Spring), October is early Spring in Brazil; Br-Dec (Autumn), the month of December is late-Spring in Brazil. Loading variables and metabolites: 1, kaempferol-3-O-dihexoside; 2, caffeoyl glucoside; 3, 3-O-caffeoylquinic acid; 4, 5-O-caffeoylquinic acid; 5, kingiside; 6, 8-epi-kingisidic acid; 7, (7α)-7-O-methylmorroniside; 8, (7β)-7- O-methylmorroniside; 9, alpigenoside; 14, fatty (linolenic) acid.
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    Figure 4. PCA over the 1H HR-MAS NMR fingerprints representing seasonal influence for major metabolites. NMR data were processed in TopSpin v3.6.3 software package and preprocessed in analysis of mixture <t>(AMIX)</t> v3.9.12 software package (Bruker BioSpin: https://www.bruker.com), PCA analysis was performed in the MetaboAnalyst v5.0 (https://www.metaboanalyst.ca/). Representations for discriminatory metabolites indicating main variables in the loading plot were manually produced in Microsoft PowerPoint v16.56 (https://officecdnm ac.microsoft.com), and the GIMP v2.10.24 software package (https://www.gimp.org) was used for final figure generation. PCA group legends: Br-April (Autumn), the month of April is mid-Autumn in Brazil; Br-Oct (Spring), October is early Spring in Brazil; Br-Dec (Autumn), the month of December is late-Spring in Brazil. Loading variables and metabolites: 1, kaempferol-3-O-dihexoside; 2, caffeoyl glucoside; 3, 3-O-caffeoylquinic acid; 4, 5-O-caffeoylquinic acid; 5, kingiside; 6, 8-epi-kingisidic acid; 7, (7α)-7-O-methylmorroniside; 8, (7β)-7- O-methylmorroniside; 9, alpigenoside; 14, fatty (linolenic) acid.
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    Figure 4. PCA over the 1H HR-MAS NMR fingerprints representing seasonal influence for major metabolites. NMR data were processed in TopSpin v3.6.3 software package and preprocessed in analysis of mixture <t>(AMIX)</t> v3.9.12 software package (Bruker BioSpin: https://www.bruker.com), PCA analysis was performed in the MetaboAnalyst v5.0 (https://www.metaboanalyst.ca/). Representations for discriminatory metabolites indicating main variables in the loading plot were manually produced in Microsoft PowerPoint v16.56 (https://officecdnm ac.microsoft.com), and the GIMP v2.10.24 software package (https://www.gimp.org) was used for final figure generation. PCA group legends: Br-April (Autumn), the month of April is mid-Autumn in Brazil; Br-Oct (Spring), October is early Spring in Brazil; Br-Dec (Autumn), the month of December is late-Spring in Brazil. Loading variables and metabolites: 1, kaempferol-3-O-dihexoside; 2, caffeoyl glucoside; 3, 3-O-caffeoylquinic acid; 4, 5-O-caffeoylquinic acid; 5, kingiside; 6, 8-epi-kingisidic acid; 7, (7α)-7-O-methylmorroniside; 8, (7β)-7- O-methylmorroniside; 9, alpigenoside; 14, fatty (linolenic) acid.
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    Image Search Results


    Figure 4. PCA over the 1H HR-MAS NMR fingerprints representing seasonal influence for major metabolites. NMR data were processed in TopSpin v3.6.3 software package and preprocessed in analysis of mixture (AMIX) v3.9.12 software package (Bruker BioSpin: https://www.bruker.com), PCA analysis was performed in the MetaboAnalyst v5.0 (https://www.metaboanalyst.ca/). Representations for discriminatory metabolites indicating main variables in the loading plot were manually produced in Microsoft PowerPoint v16.56 (https://officecdnm ac.microsoft.com), and the GIMP v2.10.24 software package (https://www.gimp.org) was used for final figure generation. PCA group legends: Br-April (Autumn), the month of April is mid-Autumn in Brazil; Br-Oct (Spring), October is early Spring in Brazil; Br-Dec (Autumn), the month of December is late-Spring in Brazil. Loading variables and metabolites: 1, kaempferol-3-O-dihexoside; 2, caffeoyl glucoside; 3, 3-O-caffeoylquinic acid; 4, 5-O-caffeoylquinic acid; 5, kingiside; 6, 8-epi-kingisidic acid; 7, (7α)-7-O-methylmorroniside; 8, (7β)-7- O-methylmorroniside; 9, alpigenoside; 14, fatty (linolenic) acid.

    Journal: Scientific reports

    Article Title: Leaf tissue metabolomics fingerprinting of Citronella gongonha Mart. by 1 H HR-MAS NMR.

    doi: 10.1038/s41598-022-22708-w

    Figure Lengend Snippet: Figure 4. PCA over the 1H HR-MAS NMR fingerprints representing seasonal influence for major metabolites. NMR data were processed in TopSpin v3.6.3 software package and preprocessed in analysis of mixture (AMIX) v3.9.12 software package (Bruker BioSpin: https://www.bruker.com), PCA analysis was performed in the MetaboAnalyst v5.0 (https://www.metaboanalyst.ca/). Representations for discriminatory metabolites indicating main variables in the loading plot were manually produced in Microsoft PowerPoint v16.56 (https://officecdnm ac.microsoft.com), and the GIMP v2.10.24 software package (https://www.gimp.org) was used for final figure generation. PCA group legends: Br-April (Autumn), the month of April is mid-Autumn in Brazil; Br-Oct (Spring), October is early Spring in Brazil; Br-Dec (Autumn), the month of December is late-Spring in Brazil. Loading variables and metabolites: 1, kaempferol-3-O-dihexoside; 2, caffeoyl glucoside; 3, 3-O-caffeoylquinic acid; 4, 5-O-caffeoylquinic acid; 5, kingiside; 6, 8-epi-kingisidic acid; 7, (7α)-7-O-methylmorroniside; 8, (7β)-7- O-methylmorroniside; 9, alpigenoside; 14, fatty (linolenic) acid.

    Article Snippet: The data was preprocessed in the analysis of mixture (AMIX) v. 3.9.12 software package (Bruker BioSpin).

    Techniques: Software, Produced

    Figure 5. Stacked spectra of 1H HR-MAS NMR exhibiting peaks of the discriminatory metabolites in comparison with PCA. NMR data were processed in TopSpin v3.6.3 software package and preprocessed in analysis of mixture (AMIX) v3.9.12 software package (Bruker BioSpin: https://www.bruker.com), PCA analysis was performed in the MetaboAnalyst v5.0 (https://www.metaboanalyst.ca/). Representations for discriminatory metabolites indicating main variables in the loading plot were manually produced in Microsoft PowerPoint v16.56 (https://officecdnmac.microsoft.com), and the GIMP v2.10.24 software package (https://www.gimp. org) was used for final figure generation. PCA group legends: Br-April (Autumn), the month of April is mid- Autumn in Brazil; Br-Oct (Spring), October is early Spring in Brazil; Br-Dec (Autumn), the month of December is late-Spring in Brazil. Loading variables and metabolites: 1, kaempferol-3-O-dihexoside; 2, caffeoyl glucoside; 3, 3-O-caffeoylquinic acid; 4, 5-O-caffeoylquinic acid; 5, kingiside; 6, 8-epi-kingisidic acid; 7, (7α)-7-O- methylmorroniside; 8, (7β)-7-O-methylmorroniside; 9, alpigenoside; 14, fatty (linolenic) acid.

    Journal: Scientific reports

    Article Title: Leaf tissue metabolomics fingerprinting of Citronella gongonha Mart. by 1 H HR-MAS NMR.

    doi: 10.1038/s41598-022-22708-w

    Figure Lengend Snippet: Figure 5. Stacked spectra of 1H HR-MAS NMR exhibiting peaks of the discriminatory metabolites in comparison with PCA. NMR data were processed in TopSpin v3.6.3 software package and preprocessed in analysis of mixture (AMIX) v3.9.12 software package (Bruker BioSpin: https://www.bruker.com), PCA analysis was performed in the MetaboAnalyst v5.0 (https://www.metaboanalyst.ca/). Representations for discriminatory metabolites indicating main variables in the loading plot were manually produced in Microsoft PowerPoint v16.56 (https://officecdnmac.microsoft.com), and the GIMP v2.10.24 software package (https://www.gimp. org) was used for final figure generation. PCA group legends: Br-April (Autumn), the month of April is mid- Autumn in Brazil; Br-Oct (Spring), October is early Spring in Brazil; Br-Dec (Autumn), the month of December is late-Spring in Brazil. Loading variables and metabolites: 1, kaempferol-3-O-dihexoside; 2, caffeoyl glucoside; 3, 3-O-caffeoylquinic acid; 4, 5-O-caffeoylquinic acid; 5, kingiside; 6, 8-epi-kingisidic acid; 7, (7α)-7-O- methylmorroniside; 8, (7β)-7-O-methylmorroniside; 9, alpigenoside; 14, fatty (linolenic) acid.

    Article Snippet: The data was preprocessed in the analysis of mixture (AMIX) v. 3.9.12 software package (Bruker BioSpin).

    Techniques: Comparison, Software, Produced