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Image Search Results
Journal: PLoS ONE
Article Title: Contribution of bacterial pathogens to evoking serological disease markers and aggravating disease activity in rheumatoid arthritis
doi: 10.1371/journal.pone.0190588
Figure Lengend Snippet: IgG and IgA antibody levels against individual pathogens and their IgA/IgG antibody ratio were analyzed for possible correlation with RF levels in 54 patients with RRP (a) and 101 patients with non-RRP (b) by Spearman’s rank correlation coefficient analysis. NOTE: Pink: significant correlation at p<0.05, Blue: trending toward correlation at 0.05≤p<0.15, No color: no correlation.
Article Snippet: Accordingly, the statistical relationships between antibody levels, serological marker levels and disease activity were analyzed by Spearman’s non-parametric rank correlation analysis, and expressed as Spearman’s
Techniques:
Journal: PLoS ONE
Article Title: Contribution of bacterial pathogens to evoking serological disease markers and aggravating disease activity in rheumatoid arthritis
doi: 10.1371/journal.pone.0190588
Figure Lengend Snippet: IgG and IgA antibody levels against individual pathogens and their IgA/IgG antibody ratio were compared with ESR in 54 patients with RRP (a) and 101 patients with non-RRP (b) by Spearman’s rank correlation coefficient analysis. NOTE: Pink: significant correlation at p<0.05, Blue: trending toward correlation at 0.05≤p<0.15, No color: no correlation.
Article Snippet: Accordingly, the statistical relationships between antibody levels, serological marker levels and disease activity were analyzed by Spearman’s non-parametric rank correlation analysis, and expressed as Spearman’s
Techniques:
Journal: PLoS ONE
Article Title: Contribution of bacterial pathogens to evoking serological disease markers and aggravating disease activity in rheumatoid arthritis
doi: 10.1371/journal.pone.0190588
Figure Lengend Snippet: IgG and IgA antibody levels against individual pathogens and their IgA/IgG antibody ratio were compared with CRP levels in 54 patients with RRP (a) and 101 patients with non-RRP (b) by Spearman’s rank correlation coefficient analysis. NOTE: Pink: significant correlation at p<0.05, Blue: trending toward correlation at 0.05≤p<0.15, No color: no correlation.
Article Snippet: Accordingly, the statistical relationships between antibody levels, serological marker levels and disease activity were analyzed by Spearman’s non-parametric rank correlation analysis, and expressed as Spearman’s
Techniques:
Journal: PLoS ONE
Article Title: Contribution of bacterial pathogens to evoking serological disease markers and aggravating disease activity in rheumatoid arthritis
doi: 10.1371/journal.pone.0190588
Figure Lengend Snippet: IgG and IgA antibody levels against individual pathogens and their IgA/IgG antibody ratio were compared with DAS28-ESR score values in 54 patients with RRP (a) and 101 patients with non-RRP (b), using Spearman’s rank correlation coefficient analysis. NOTE: Pink: significant correlation at p<0.05, Blue: trending toward correlation at 0.05≤p<0.15, No color: no correlation.
Article Snippet: Accordingly, the statistical relationships between antibody levels, serological marker levels and disease activity were analyzed by Spearman’s non-parametric rank correlation analysis, and expressed as Spearman’s
Techniques:
Journal: PLoS ONE
Article Title: Contribution of bacterial pathogens to evoking serological disease markers and aggravating disease activity in rheumatoid arthritis
doi: 10.1371/journal.pone.0190588
Figure Lengend Snippet: RF levels were compared with IgG and IgA index values, severity of arthritis, disease marker levels, serum cytokine levels, and hematological values in 54 patients with RRP and 101 patients with non-RRP, using Spearman’s rank correlation coefficient analysis. NOTE: Plot: Visual display for positive and negative “ρ” value of Spearmen correlation coefficient. Cells highlighted with yellow indicate significant correlation at p<0.05. Index 1: sum of anti- E . coli -LPS + anti-Pg-LPS, Index 2: sum of anti- E . coli -LPS + anti-PG-PS, Index 3: sum of anti -E . coli -LPS + anti-Pg-LPS + anti-PG-PS.
Article Snippet: Accordingly, the statistical relationships between antibody levels, serological marker levels and disease activity were analyzed by Spearman’s non-parametric rank correlation analysis, and expressed as Spearman’s
Techniques: Marker
Journal: PLoS ONE
Article Title: Contribution of bacterial pathogens to evoking serological disease markers and aggravating disease activity in rheumatoid arthritis
doi: 10.1371/journal.pone.0190588
Figure Lengend Snippet: Anti-CPP antibody levels were compared with IgG and IgA index values, severity of arthritis, disease marker levels, serum cytokine levels, and hematological analytical values in 54 patients with RRP and 101 patients with non-RRP, using Spearman’s rank correlation coefficient analysis. NOTE: Plot: Visual display for positive and negative “ρ” value of Spearmen correlation coefficient. Cells highlighted with yellow indicate significant correlation at p<0.05. Index 1: sum of anti- E . coli -LPS + anti-Pg-LPS, Index 2: sum of anti- E . coli -LPS + anti-PG-PS, Index 3: sum of anti -E . coli -LPS + anti-Pg-LPS + anti-PG-PS.
Article Snippet: Accordingly, the statistical relationships between antibody levels, serological marker levels and disease activity were analyzed by Spearman’s non-parametric rank correlation analysis, and expressed as Spearman’s
Techniques: Marker
Journal: PLoS ONE
Article Title: Contribution of bacterial pathogens to evoking serological disease markers and aggravating disease activity in rheumatoid arthritis
doi: 10.1371/journal.pone.0190588
Figure Lengend Snippet: ESR values were compared with IgG and IgA index values, severity of arthritis, disease marker levels, serum cytokine levels, and hematological values in 54 patients with RRP and 101 patients with non-RRP, using Spearman’s rank correlation coefficient analysis. NOTE: Plot: Visual display for positive and negative “ρ” value of Spearmen correlation coefficient. Cells highlighted with yellow indicate significant correlation at p<0.05. Index 1: sum of anti- E . coli -LPS + anti-Pg-LPS, Index 2: sum of anti- E . coli -LPS + anti-PG-PS, Index 3: sum of anti -E . coli -LPS + anti-Pg-LPS + anti-PG-PS.
Article Snippet: Accordingly, the statistical relationships between antibody levels, serological marker levels and disease activity were analyzed by Spearman’s non-parametric rank correlation analysis, and expressed as Spearman’s
Techniques: Marker
Journal: PLoS ONE
Article Title: Contribution of bacterial pathogens to evoking serological disease markers and aggravating disease activity in rheumatoid arthritis
doi: 10.1371/journal.pone.0190588
Figure Lengend Snippet: CRP levels were compared with IgG and IgA index values, severity of arthritis, disease marker levels, serum cytokine levels, and hematological analytical values in 54 patients with RRP and 101 patients with non-RRP, using Spearman’s rank correlation coefficient analysis. NOTE: Plot: Visual display for positive and negative “ρ” value of Spearmen correlation coefficient. Cells highlighted with yellow indicate significant correlation at p<0.05. Index 1: sum of anti- E . coli -LPS + anti-Pg-LPS, Index 2: sum of anti- E . coli -LPS + anti-PG-PS, Index 3: sum of anti -E . coli -LPS + anti-Pg-LPS + anti-PG-PS.
Article Snippet: Accordingly, the statistical relationships between antibody levels, serological marker levels and disease activity were analyzed by Spearman’s non-parametric rank correlation analysis, and expressed as Spearman’s
Techniques: Marker
Journal: PLoS ONE
Article Title: Contribution of bacterial pathogens to evoking serological disease markers and aggravating disease activity in rheumatoid arthritis
doi: 10.1371/journal.pone.0190588
Figure Lengend Snippet: Potential correlations between individual disease marker levels in 54 patients with RRP and 101 patients with non-RRP were confirmed by Spearman’s rank correlation coefficient analysis. NOTE: Pink: significant correlation at p<0.01, No color: no correlation.
Article Snippet: Accordingly, the statistical relationships between antibody levels, serological marker levels and disease activity were analyzed by Spearman’s non-parametric rank correlation analysis, and expressed as Spearman’s
Techniques: Marker