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In order to evaluate whether the signal between natural data subdivisions (gene type, genome and locus) is in conflict, we investigated whether these natural data subdivisions corresponded to spectral partitions.
The contribution of the different spectral partitions to each of the natural data subdivisions was assessed by plotting the fraction of sites belonging to the different spectral partitions for each of the natural data subdivisions.
We examined potential conflicts in phylogenetic signal between natural data subdivisions by comparing them to spectral partitions.
Our results suggest that there is no strong correspondence between the spectral partitions and the natural data subdivisions (Additional file 4).
This lack of correspondence indicates that conflict between natural data subdivisions (gene type, genome and locus) is smaller than the conflict between sites within each of the natural subdivisions.
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For all other data, subdivision did not yield significantly different reconstructions than those obtained with the entire data sets.
Topics include: 2D and 3D drawing, sampling theory, interpolation, rasterization, image compositing, the real-time GPU graphics pipeline (and parallel rendering), VR rendering, geometric transformations, curves and surfaces, geometric data structures, subdivision, meshing, spatial hierarchies, image processing, time integration, physically-based animation, and inverse kinematics.
Al-Shehbaz et al. (2006) discussed the evaluation of characters and their utilisation in infrafamilial classifications, delimitations of genera, the collection of molecular data and major subdivisions of the family, problematic taxa and future challenges in the Brassicaceae (Cruciferae).
Differences in ROI data between amygdala subdivisions were assessed using a Students t-test for all combinations of the 3 areas of interest, both for the right and left amygdala.
Data of these subdivisions have been compared within each structure as well as between frequency-related substructures of different experimental groups using U-test (not normally distributed data) or t-test (normally distributed data).
Facies analysis, recognition of different rank erosional, angular and progressive unconformities and new paleontological data, allowed a subdivision into five units of four formations formerly ascribed to the Late Cretaceous.
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CEO of Professional Science Editing for Scientists @ prosciediting.com