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Four sites and three branches were observed in Artiodactyla (Clade IIa), five sites/five branches in Primate (Clade IIb), and nine sites/six branches in Rodentia (Clade IIc) (Fig. 5).
Comparable axon stalling defects of adult MB neurons, as well as missing larval MB dorsal axonal branches were observed in unf mutant organisms (Bates et al., submitted), validating our study of unf's mechanism of action by targeted RNAi.
Typically the longest branches were observed in the two basal species D. rerio and G. morhua.
The characteristic morphological changes in microglia activation, that is, an altered morphology with withdrawal of the dendritic branches were observed in this study.
Next, we tested for an excess of nonsynonymous substitutions in V1R3 and V1R6, in which obviously long branches were observed in the phylogenetic tree (supplementary fig. S5 B and E, Supplementary Material online).
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IC morphology with three or four branches was observed in one sample.
No lean premixed branches are observed in the simulation or and experiment.
In Figure 1f, feather-like nanowire assemblies with abundant branches are observed, while octopus-like nanowire assemblies with abundant branches are observed in Figure 1f.
Significant improvement in all the parameters, like length of shoot, length of inter node, number of leaves and number of branches was observed in plants at the end of 3rd, 4th and 5th weeks of treatment.
For example, long lateral branches are observed in teosinte.
Fractals have branched structures; however, larger branches are observed in films obtained at 37°C.
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