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Signal intensity on both EST- and genome-derived arrays was highly correlated with probe distance from the 3' UTR, information often missing from ESTs yet present in early-stage genome projects.
Signal for features shared between the two arrays was highly correlated (Pearson's correlation coefficient R = 0.953, Figure 3a), with similar distribution of signal across the features for each array and similar signal-to-noise ratios (data not shown).
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SnS2nanowire arrays are highly ordered and highly dense.
Taguchi's orthogonal arrays are highly fractional orthogonal designs.
From a viewpoint of final device integration, aligned nanotube arrays are highly desirable.
Chromosome 17 or 21 α-satellite arrays are highly competent HAC-forming substrates in this assay.
The enhanced PL of SiC nanorod arrays is highly promising for use in designing highly efficient optical devices.
The field emission scanning electron microscopic images revealed that these metal nanostructure arrays were highly ordered over a large area.
Self-supported core/shell nanowire arrays are highly desirable for designing high-performance electrochemical energy storage devices.
Long axis of the rod-like structures forming the arrays is aligned perpendicular to the chain direction of FT-PTFE, and accordingly, the arrays are highly anisotropic.
For the first time, the colloidal TiO2 nanorods were self-assembled into nine arrays, three of these arrays were highly ordered superlattices over large areas.
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