TOM and Dynamic Tree Cut
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@ -40,9 +40,9 @@ x2_clusters <- ifelse(x2>0,1,-1)
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# Plotting
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# Plotting
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V(g1)$color <- ifelse(x1_clusters>0,"green","yellow")
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V(g1)$color <- ifelse(x1_clusters>0,"green","yellow")
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V(g1)$size <- 50*abs(x1)
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#V(g1)$size <- 80*abs(x1)
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V(g2)$color <- ifelse(x2_clusters>0,"green","yellow")
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V(g2)$color <- ifelse(x2_clusters>0,"green","yellow")
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V(g2)$size <- 50*abs(x2)
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V(g2)$size <- 10
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plot(g1, main=paste(g1.netname, " Laplace Spectral Clustering"))
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plot(g1, main=paste(g1.netname, " Laplace Spectral Clustering"))
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plot(g2, main=paste(g2.netname, " Laplace Spectral Clustering"),
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plot(g2, main=paste(g2.netname, " Laplace Spectral Clustering"),
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vertex.label=NA)
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vertex.label=NA)
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@ -77,6 +77,32 @@ plot(karate,vertex.size=10,
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###################### Part 4: TOM and Dynamic Tree Cut ######################
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###################### Part 4: TOM and Dynamic Tree Cut ######################
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# Next smallest eig
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y1 <- eigen(g1.Lap)$vectors[,n1-2] # get n-2 column
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names(y1) <- names(V(g1))
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y1_val <- eigen(g1.Lap)$values[n1-2]
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y2 <- eigen(g2.Lap)$vectors[,n2-2] # get n-2 column
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names(y2) <- names(V(g2))
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y2_val <- eigen(g2.Lap)$values[n2-2]
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# Distance in the 2D Laplacian Eig-Space
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lap_dist1 <- dist(cbind(x1,y1))
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lap_dist2 <- dist(cbind(x2,y2))
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# Use hierachical clustering of distance matrix
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lap_tree1 <- hclust(lap_dist1)
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lap_tree2 <- hclust(lap_dist2)
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# Use WGCNA to dynamically decide how many clusters
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cutreeDynamicTree(lap_tree1)
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cutreeDynamicTree(lap_tree2)
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# TOM
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g1.TOM <- TOMsimilarity(as.matrix(g1.adj))
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g2.TOM <- TOMsimilarity(as.matrix(g2.adj))
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g1.TOM
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g2.TOM
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TOMplot(g1.TOM, lap_tree1, main=paste(g1.netname, " Heatmap Plot"))
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TOMplot(g2.TOM, lap_tree2, main=paste(g2.netname, " Heatmap Plot"))
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################################ Part 5: UMAP ################################
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################################ Part 5: UMAP ################################
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