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In order to estimate the dense disparity map, we propose an iterative two-phase algorithm.
In order to obtain the dense disparity map, we propose an iterative two-phase algorithm.
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From the land cover map, we proposed an "improved" cover type map to illustrate the development of a high growing stock of forest based on forest management.
Based on evidence for pinhole-induced degradation observed in photocurrent maps, we propose a nucleation and island growth mechanism and a model for the photocurrent behavior employing a modified Johnson Mehl Avrami Kolmogorov (JMAK) equation.
To explain this paradoxical cerebral invariance of cultural maps, we propose a neuronal recycling hypothesis, according to which cultural inventions invade evolutionarily older brain circuits and inherit many of their structural constraints.
The road-map we propose for neoENCODE integrates this historical knowledge and tries to adapt it to the intricacies of these future projects (see above).
Inspired by epistatic models of multi-locus quantitative trait (QTL) mapping, we propose a unified model of expression and genotype to identify quantitative trait genes (QTG) by extending the conventional linear model to include both genotype and expression of regulator genes and their interactions.
By comparing QTL and two-QTL mapping, we propose that a common mechanism to reduce this cost could be to accumulate new mutations to mitigate the effect of AP and allow the organism to adapt to the environment where it was previously deleterious.
Based on the aforementioned analysis, including the approaches of early termination mode decision, adaptive search range ME and fast DE for depth map coding, we propose a low-complexity depth map compression algorithm for 3D-HEVC as follows.
In this paper, for an accurate disparity map generation, we propose a semi-global stereo matching system as shown in Fig. 2.
While synthesis of β-alanine is evolutionarily conserved in the major insect orders (Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway map 00410), we propose that β-alanine biosynthesis in A. pisum is now additionally required to supply Buchnera.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com