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We have seen in the topological analysis of the reported edge clusters that for higher hybrid similarity thresholds, the reported edge clusters have higher recurrence.
Purpose: To evaluate patients who had implantation of an acrylic intraocular lens (IOL) and reported edge glare that did not lessen with time.
We have noticed that the reported edge clusters from these small hybrid graphs are not frequent.
For example, for a frequency threshold of 5, none of the reported edge clusters were frequent.
To assess the biological significance of the reported edge clusters, we performed functional enrichment analysis of Gene Ontology (GO) biological process terms as well as KEGG pathways.
We have noticed that for a small edge frequency threshold (k), a large percentage of the reported edge clusters are not frequent in at least k coexpression networks.
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Although previous retrieval studies have reported edge-loading as a mechanism that leads to increased wear in MoMHRA implants, this study integrating dynamic motion analysis with CT data is the first to quantify duration and magnitude of edge-loading in vivo during functional activities in MoMHRA patients.
Using the female mouse liver gene expression data, we report edge scores for the known causal relationships Insig1 → Dhcr7 and Insig1 → Fdft1 and the other edges depicted in Figure 4.
Interestingly, Friedman et al [40], in addition to reporting edge-sensitive color-selective cells (presumably double-opponent), reported a smaller population of V1 color surface cells that were not particularly sensitive to contour.
Recently, C. Tao et al. [5] reported electronic edge states dependent on the edge atomic orientations in G nanoribbons.
For northern hemisphere migrants, we measured the shortest distance between the reported northern edge of the non-breeding range and the northern edge of the breeding range, whereas for south-hemisphere migrants we measured the shortest distance between the reported southern edge of the non-breeding range and the southern edge of the breeding range.
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