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The aforementioned algorithms are well developed for depth map coding achieving significant time savings in 3D-HEVC.
Through comparisons between both parental maps, as well as with previously developed maps for P. pinaster[ 20, 81, 82] based on 654 common markers, 12 groups could be identified for the three maps, which is in agreement with the haploid number of chromosomes for the species.
For many important crops, genome mapping using genetic linkage maps, physical maps and cytogenetic maps are well developed, such as rice, wheat, barley, etc. (Kurata et al. 1994; Ramsay et al. 2000; Hearnden et al. 2007; Li et al. 2015a).
The soybean composite genetic map is well developed consisting of 20 linkage groups with 1,849 markers, including 1,015 SSRs, 709 RFLPs, 73 RAPDs, 24 classical traits, six AFLPs, ten isozymes, and 12 others [ 10].
Genetic resources for tilapia are relatively well developed, and include a microsatellite-based genetic map [ 3] and a physical map based on BAC fingerprints [ 4].
Although statistical models for QTL mapping have been well developed since the publication of Lander and Botstein's 3 seminal paper, the model development of QTL mapping in outbred populations, a group of species of great environmental and economical importance, has received limited attention.
However, methods for analysing groups of Ktrans maps are not well developed and generally manually selected ROI are used.
JFG developed mapping population and SSR markers.
Compared with other crops, genetic mapping in citrus is relatively less well developed.
In contrast the 1998 goat genetic map (the most recently published) is much less well developed spanning 2737 cM and comprising only 307 loci.
Parietal multisensory maps are present in all mammals and are especially well developed in primates and humans.
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