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Choosing where to look next in a mutation sequence space: Active Learning of informative p53 cancer rescue mutants.

, , , , and . ISMB/ECCB (Supplement of Bioinformatics), page 104-114. (2007)

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Choosing where to look next in a mutation sequence space: Active Learning of informative p53 cancer rescue mutants., , , , and . ISMB/ECCB (Supplement of Bioinformatics), page 104-114. (2007)A Comparison of Dynamic Reposing and Tangent Distance for Drug Activity Prediction., , , and . NIPS, page 216-223. Morgan Kaufmann, (1993)Precedent-based manipulation of VLSI structures., and . DAC, page 667-670. IEEE Computer Society Press, (1986)Advances in Functional Abstraction from Structure., , , , and . DAC, page 708-711. ACM, (1988)A Branch-and-Bound Algorithm for Optimal Protein Threading with Pairwise (Contact Potential) Amino Acid Interactions., and . HICSS (5), page 365-374. IEEE Computer Society, (1994)A System Which Uses Examples to Learn VLSI Structure Manipulations., and . AAAI, page 1024-1028. Morgan Kaufmann, (1986)An anytime algorithm for gapped block protein threading with pair interactions.. RECOMB, page 238-249. ACM, (1999)Modeling Protein Homopolymeric Repeats: Possible Polyglutamine Structural Motifs for Huntington's Disease., , , , and . ISMB, page 105-114. AAAI, (1998)Functional Abstraction from Structure in VLSI Simulation Models., , and . DAC, page 822-828. IEEE Computer Society Press / ACM, (1987)Constrained (closed-loop) robot simulation by local constraint propagation.. ICRA, page 689-694. IEEE, (1986)