<p>(A) Meta-analysis of AG+GG <i>vs.</i> AA (dominant model) using the random-effects model. (B) Meta-analysis of AG <i>vs</i>. AA using the fixed-effects model. (C) Meta-analysis of GG <i>vs.</i> AA using a random-effects model. The area of the squares reflects the weight (inverse of the variance). The diamond represents the summary OR and 95% CI.</p
<p>Each figure represents a unique article in this meta-analysis. The figures outside the three line...
<p>Subgroup analysis by ethnicity in the meta-analysis on the association between MDM2 SNP309 polymo...
<p>Meta-analysis with a fixed effect model for the association between reject risk and the -592 C/A ...
<p>(A) Meta-analysis of the association between GSTM1 polymorphism and RCC risk using the fixed-effe...
<p>Dominant model: AG+GG <i>vs.</i> AA; Recessive model: GG <i>vs.</i> AA+AG; Additive model: G <i>v...
<p>(A) Meta-analysis of AG+GG <i>vs</i>. AA (dominant model) using the random-effects model. (B) Met...
<p>Abbreviations: R, Random-effects model; F, Fixed-effects model; P<sub>h,</sub> test for heterogen...
<p>Abbreviations: R, Random-effects model; F, Fixed-effects model; P<sub>h,</sub> test for heterogen...
<p>Each study is shown by the point estimate of the odds ratio, and a horizontal line denotes the 95...
<p>Meta-analysis with a random-effects model for the association between TB risk and the <i>MCP-1</i...
<p><sup>a</sup> REM: random-effect model. FEM: fixed-effect model.</p><p>P-value of overall effect.<...
<p>Dominant model: GC+CC vs. GG; Recessive model: CC vs. GG+GC; Additive model: C vs. G; R, Random-e...
<p>Cumulative meta-analysis ofthe association between the ChAT rs3810950 G/A polymorphism and AD ris...
<p>(A)Meta-analysis in a fix effects model for dominant model. (B) Meta-analysis in a fix effects mo...
<p>(A) Funnel plot for the detection of bias in the meta-analysis of the association between GSTM1 n...
<p>Each figure represents a unique article in this meta-analysis. The figures outside the three line...
<p>Subgroup analysis by ethnicity in the meta-analysis on the association between MDM2 SNP309 polymo...
<p>Meta-analysis with a fixed effect model for the association between reject risk and the -592 C/A ...
<p>(A) Meta-analysis of the association between GSTM1 polymorphism and RCC risk using the fixed-effe...
<p>Dominant model: AG+GG <i>vs.</i> AA; Recessive model: GG <i>vs.</i> AA+AG; Additive model: G <i>v...
<p>(A) Meta-analysis of AG+GG <i>vs</i>. AA (dominant model) using the random-effects model. (B) Met...
<p>Abbreviations: R, Random-effects model; F, Fixed-effects model; P<sub>h,</sub> test for heterogen...
<p>Abbreviations: R, Random-effects model; F, Fixed-effects model; P<sub>h,</sub> test for heterogen...
<p>Each study is shown by the point estimate of the odds ratio, and a horizontal line denotes the 95...
<p>Meta-analysis with a random-effects model for the association between TB risk and the <i>MCP-1</i...
<p><sup>a</sup> REM: random-effect model. FEM: fixed-effect model.</p><p>P-value of overall effect.<...
<p>Dominant model: GC+CC vs. GG; Recessive model: CC vs. GG+GC; Additive model: C vs. G; R, Random-e...
<p>Cumulative meta-analysis ofthe association between the ChAT rs3810950 G/A polymorphism and AD ris...
<p>(A)Meta-analysis in a fix effects model for dominant model. (B) Meta-analysis in a fix effects mo...
<p>(A) Funnel plot for the detection of bias in the meta-analysis of the association between GSTM1 n...
<p>Each figure represents a unique article in this meta-analysis. The figures outside the three line...
<p>Subgroup analysis by ethnicity in the meta-analysis on the association between MDM2 SNP309 polymo...
<p>Meta-analysis with a fixed effect model for the association between reject risk and the -592 C/A ...