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The wildfire hazard maps predicted by CDM model are shown in Fig. 3f.
The wildfire hazard maps predicted by gravity and road-density models are also presented in Fig. 3c and d for comparison purposes.
To perform t-tests, quantile, and hazard area analysis, the wildfire hazard maps predicted by Gravity and CDM models were reclassified into five zones based on quantile breaks (Cooke et al. 2007), which are named: Very Low-hazard, Low-hazard, Medium-hazard, High-hazard, and Very High-hazard zones (refer to Sadasivuni et al. 2013 for details of reclassification methodology).
The saliency maps of Attention based on Information Maximization (AIM) model in [30] were also shown in Fig. 8. Evidently, the salient features and objects in these scenes predicted by the saliency maps accord with human observations and the saliency maps predicted by our model qualitatively matched the density maps of human gaze.
These observations demonstrate that the proposed here sequence-based L-pfSeqGNM method does not rely on the high quality of contact maps predicted by NNcon.
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The B. aphidicola operon map predicted by DisTer is more compact that the other 3 available in the literature; it is also more compact than that of E. coli (Table 1).
For more than four thousand metabolic reactions in the latest human metabolic reconstruction, Recon 3D, we compared the atom mappings predicted by six atom mapping algorithms.
We interpret these results as supporting the existence of a two-stage process: first, salience is initially computed from the addition of feature maps, as predicted by Guided Search Theory, and then grouping effects are involved at a later stage, after a 360 ms delay in our Experiment.
As seen in the activation maps, and as predicted by retinotopic studies, multiple cortical regions corresponding to the multiple visual maps become active during each direction of attention.
The numerical study of grid sensitivity indicates that the global segregation pattern and CET are not significantly affected by grid size; however, some fine details of the segregation map which are predicted by fine grid (~0.5 mm) are smeared or locally averaged by the coarse grid (~2 mm).
MAP was best predicted by lactate with an agreement between predicted and measured of r2 = 0.64.
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