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Even the simplest of animals exhibit behavioral sequences with complex temporal dynamics.
Experimental results demonstrate that our body segmentation system works very well in the live video and standard sequences with complex background.
Furthermore, coding time reduction is particularly significant on test sequences with complex movement, such as "BasketballDrive," "BasketballDrill," and "RaceHorses".
The results also show that the proposed method works better in sequences with complex motions, for example, Soccer and Foreman.
However, for the sequences with complex background, such as Ballet and Dog, the spatial attention model is not accurate enough.
Experimental results confirm that this method achieves notably better performance than H.263+ Intracoding and is close to Intercoding efficiency for sequences with complex motion.
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Regarding the results obtained on the Foreman sequence, a medium-motion sequence with complex facial expressions, SW coding plus the skip outperforms SW coding with the intra mode option in a GOP of 2. The quality of the SI of the skipped frequency bands is sufficient as not to have a negative impact on the distortion at no rate cost.
This is not surprising because the human genome has about 98.9% of non-coding sequences with a complex composition given by introns and intergenic regions.
This is beginning to change with the advent of affordable, high-throughput genotyping approaches coupled with robust statistical analysis methods that make it possible to examine genome-wide patterns of natural variation and link sequence polymorphism with complex trait variation.
Let (s^{2}) denote the space of all double sequences, and let (ell_{infty }^{2}), (c^{2}) and (c_{0}^{2}) be the linear spaces of bounded, convergent and null sequences (x= ( x_{jk} ) ) with complex terms, respectively, normed by (Vert xVert _{ ( infty,2 ) }=sup_{j,k}vert x_{jk}vert ), where j, (kin mathbb{N}= { 1,2,, ldots } ).
Kong, A. et al. Parental origin of sequence variants associated with complex diseases.
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