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Accelerating Protein Structure Recovery Using Graphics Processing Units.

, , and . International Conference on Computational Science (1), volume 3514 of Lecture Notes in Computer Science, page 451-459. Springer, (2005)

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A portable, reusable framework for scientific computing on GPUs., , , , and . SIGGRAPH Posters, page 93. ACM, (2004)Emphasizing the area of interest using real-time shaders., , , , , and . SIGGRAPH Posters, page 124. ACM, (2005)HIV drug resistance prediction using multiple regression., , and . ICCABS, page 1-2. IEEE Computer Society, (2013)Analysis of drug resistance in HIV protease., , , and . BMC Bioinform., 19-S (11): 362:1-362:6 (2018)AMMP-Vis: a collaborative virtual environment for molecular modeling., , , , , and . VRST, page 8-15. ACM, (2005)The Binary Multi-SVM Voting System for Protein Subcellular Localization Prediction., , , , and . ICCSA (3), volume 3482 of Lecture Notes in Computer Science, page 299-308. Springer, (2005)Evolution of drug resistance in HIV protease., , , and . BMC Bioinform., 21-S (18): 497 (2020)Support Vector Machine with the Fuzzy Hybrid Kernel for Protein Subcellular Localization Classification., , , , and . FUZZ-IEEE, page 420-423. IEEE, (2005)Using triangulation to include target structure improves drug resistance prediction accuracy., , and . ICCABS, page 1. IEEE Computer Society, (2013)Sparse Representation for HIV-1 Protease Drug Resistance Prediction., , and . SDM, page 342-349. SIAM, (2013)