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To summarize the genetic evidence in favor of a given edge orientation A → B, we propose the use of edge orienting scores.
The log file contains a host of information regarding computation of the edge orienting scores including SEM model p-values, Wald test statistics for each path coefficient, and the SNP identifiers for the causal anchor sets M A and M B. Although the main output of NEO are scores for every edge orientation, one can construct a global directed network by thresholding an edge orienting score.
We propose several edge orienting scores that measure the genetic evidence in favor of a given edge orientation A → B. While several methods exist for constructing undirected gene co-expression networks based on thousands of genes, we have evaluated the NEO method for inferring directed networks involving relatively few genes (fewer than 10 in our simulations).
For instance, the Petrus method, which solves the cube in fewer moves, consists in building a 2×2×2 block, then expanding it to a 2×2×3, correcting edge orientation, building a 2×3×3 (two layers solved), positioning the remaining corners, orienting those corners, and finally positioning the remaining edges.[2].
We also design a novel framework to estimate the depth information which combines the local depth with edge orientation.
The relationship between the catalytic activity of activated carbon and the surface content of edge orientation was discussed.
The specific catalytic activity of activated carbon is determined by the percentage of the edge orientation on the surface.
The features are based on edge orientation, the configurations of these edges, and on grey level clustering.
We related this to edge orientation and to the occurrence of natural and anthropogenical environmental edge gradients like microclimate and soil chemistry.
Pole figures of the X-ray diffraction show that the edge orientation is parallel to the zigzag edge direction on a macroscopic scale.
The present work investigates the importance of the ridge design and in particular, shows that the ridge trailing edge orientation at the anastomosis has significant effects in potentially improving the hemodynamic efficiency of this type of graft.
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