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BioASF: a framework for automatically generating executable pathway models specified in BioPAX.

, , , , , and . Bioinform., 32 (12): 60-69 (2016)

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PIPENN: protein interface prediction from sequence with an ensemble of neural nets., , , , , and . Bioinform., 38 (8): 2111-2118 (2022)SeRenDIP-CE: sequence-based interface prediction for conformational epitopes., , , , , , , , and . Bioinform., 37 (20): 3421-3427 (2021)BioASF: a framework for automatically generating executable pathway models specified in BioPAX., , , , , and . Bioinform., 32 (12): 60-69 (2016)Towards Use-Case Driven Self-Management of Distributed Systems.. Delft University of Technology, Netherlands, (2011)base-search.net (fttudelft:oai:tudelft.nl:uuid:5dcb4a3f-0dc5-4af9-b40d-1b82f4aa8135).Using Semantic Web Technology for Self-Management of Distributed Object-Oriented Systems., , , and . Web Intelligence, page 489-493. IEEE Computer Society, (2006)Structured Use-cases as a Basis for Self-management of Distributed Systems., , , and . ICSOFT (1), page 198-205. SciTePress, (2010)Thunk Lifting: Reducing Heap Usage in an Implementation of a Lazy Functional Language., and . J. Funct. Log. Program., (1995)Multi-level Model-Based Self-diagnosis of Distributed Object-Oriented Systems., , , and . ATC, volume 4158 of Lecture Notes in Computer Science, page 67-77. Springer, (2006)A Self-Healing Approach for Object-Oriented Applications., , and . DEXA Workshops, page 191-195. IEEE Computer Society, (2005)