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Stable stem enabled Shannon entropies distinguish non-coding RNAs from random backgrounds.

, , , , , , and . BMC Bioinform., 13 (S-5): S1 (2012)

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The Stretched Network: Properties, Routing, and Performance., and . J. Inf. Sci. Eng., 24 (2): 361-378 (2008)Simultaneous Prediction of RNA Secondary Structure and Helix Coaxial Stacking., , , and . BIBM, page 89-95. IEEE Computer Society, (2011)Stable stem enabled shannon entropies distinguish non-coding RNAs from random backgrounds., , , , , , and . ICCABS, page 184-189. IEEE Computer Society, (2011)Capturing an Intruder in the Pyramid., , and . CSR, volume 3967 of Lecture Notes in Computer Science, page 580-590. Springer, (2006)Topological Properties of Necklace Networks., and . ISPAN, page 40-45. IEEE Computer Society, (2005)Stable stem enabled Shannon entropies distinguish non-coding RNAs from random backgrounds., , , , , , and . BMC Bioinform., 13 (S-5): S1 (2012)The Stretched-Hypercube: A VLSI Efficient Network Topology., and . ISPAN, page 462-467. IEEE Computer Society, (2005)Topological Properties of Stretched Graphs., and . AICCSA, page 647-650. IEEE Computer Society, (2006)Graph generating systems for predicting biological structures.. University of Georgia, Athens, GA, USA, (2012)base-search.net (ftunivgeorgia:oai:ugakr.libs.uga.edu:10724/28106).