Nucleus Accumbens Mega Modules Gray26 (a) and Cadetblue2 (b). Solid black arrows point to ALSPAC GWAS nominal genes. These modules did not contain IASPSAD nominal genes. Edge-width is proportional to the difference in correlation strength treatment and control mice, and node color represents IASPSAD GWAS p-values.</p
<p>(<b>a</b>) Heatmap of log<sub>10</sub>-transformed p-values from Fisher’s exact test for 50 modul...
Related to Fig 4. (A) The correlation between the normal MB phenotype rate and variable exon 4. (B) ...
<p>(a) Ids-ko and (b) syngeneic wt mice. Nuclei are shown in blue (DAPI staining), NPs in red (rhoda...
Prefrontal Cortex Mega Modules Cadetblue (a) and Aliceblue (b). Solid black arrows point to ALSPAC G...
Ventral Tegmental Area Mega Modules Bisque. Solid black arrows point to ALSPAC GWAS nominal genes, a...
<p>The color coding of the bigger nodes represent log fold-changes of significantly DEGs: blue repre...
See also S5 and S6 Figs. (A) MB lobe morphology in wild-type and Dscam1 mutant animals was visualize...
Correlation between each Mega Module’s score and average ALSPAC gene-wise GWAS p-value, for the Pref...
LIBD and PITT samples’ modules with a relative convergence of SCZ genetic risk (on x axis: LIBD pres...
Top gene ontology enrichment results for nucleus accumbens mega module Gray26.</p
<p>(<b>A</b>) Points indicate treatment groups which were originally represented by a vector contain...
<p>Gene-sets and number of genes are plotted on the y-axis. Beta values (effect sizes) as calculated...
<p><b>A.</b> RICM of live GCs of mutant neurons (columns) on different matrices (rows). Dark areas i...
See also S12 Fig. (A) The normal phenotype is a sigmoidal function of Dscam1 diversity with various ...
<p>There is a highly significant correlation between GS and MM in these modules.</p
<p>(<b>a</b>) Heatmap of log<sub>10</sub>-transformed p-values from Fisher’s exact test for 50 modul...
Related to Fig 4. (A) The correlation between the normal MB phenotype rate and variable exon 4. (B) ...
<p>(a) Ids-ko and (b) syngeneic wt mice. Nuclei are shown in blue (DAPI staining), NPs in red (rhoda...
Prefrontal Cortex Mega Modules Cadetblue (a) and Aliceblue (b). Solid black arrows point to ALSPAC G...
Ventral Tegmental Area Mega Modules Bisque. Solid black arrows point to ALSPAC GWAS nominal genes, a...
<p>The color coding of the bigger nodes represent log fold-changes of significantly DEGs: blue repre...
See also S5 and S6 Figs. (A) MB lobe morphology in wild-type and Dscam1 mutant animals was visualize...
Correlation between each Mega Module’s score and average ALSPAC gene-wise GWAS p-value, for the Pref...
LIBD and PITT samples’ modules with a relative convergence of SCZ genetic risk (on x axis: LIBD pres...
Top gene ontology enrichment results for nucleus accumbens mega module Gray26.</p
<p>(<b>A</b>) Points indicate treatment groups which were originally represented by a vector contain...
<p>Gene-sets and number of genes are plotted on the y-axis. Beta values (effect sizes) as calculated...
<p><b>A.</b> RICM of live GCs of mutant neurons (columns) on different matrices (rows). Dark areas i...
See also S12 Fig. (A) The normal phenotype is a sigmoidal function of Dscam1 diversity with various ...
<p>There is a highly significant correlation between GS and MM in these modules.</p
<p>(<b>a</b>) Heatmap of log<sub>10</sub>-transformed p-values from Fisher’s exact test for 50 modul...
Related to Fig 4. (A) The correlation between the normal MB phenotype rate and variable exon 4. (B) ...
<p>(a) Ids-ko and (b) syngeneic wt mice. Nuclei are shown in blue (DAPI staining), NPs in red (rhoda...