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PSICOV: precise structural contact prediction using sparse inverse covariance estimation on large multiple sequence alignments.

, , , and . Bioinform., 28 (2): 184-190 (2012)

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springScape: visualisation of microarray and contextual bioinformatic data using spring embedding and an "information landscape"., , and . ISMB (Supplement of Bioinformatics), page 99-107. (2006)PSICOV: precise structural contact prediction using sparse inverse covariance estimation on large multiple sequence alignments., , , and . Bioinform., 28 (2): 184-190 (2012)BioRAT: extracting biological information from full-length papers., , , and . Bioinform., 20 (17): 3206-3213 (2004)The PSIPRED Protein Analysis Workbench: 20 years on., and . Nucleic Acids Res., 47 (Webserver-Issue): W402-W407 (2019)Protein function prediction is improved by creating synthetic feature samples with generative adversarial networks., and . Nat. Mach. Intell., 2 (9): 540-550 (2020)SparCA: Sparse Compressed Agglomeration for Feature Extraction and Dimensionality Reduction., , , and . CoRR, (2023)A large-scale evaluation of computational protein function prediction., , , , , , , , , and 92 other author(s). Nature methods, 10 (3): 221--227 (Mar 27, 2013)Domain-guided Self-supervision of EEG Data Improves Downstream Classification Performance and Generalizability., , , , , , , , and . ML4H@NeurIPS, volume 158 of Proceedings of Machine Learning Research, page 130-142. PMLR, (2021)Automatic Prediction of Functional Site Regions in Low-Resolution Protein Structures., , , , , and . CSB, page 702-703. IEEE Computer Society, (2004)Predicting Gene Ontology Annotations from Sequence Data Using Kernel-Based Machine Learning Algorithms., , , and . CSB, page 529-530. IEEE Computer Society, (2004)