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Statistical Analysis of Computed Energy Landscapes to Understand Dysfunction in Pathogenic Protein Variants.

, , , and . BCB, page 679-684. ACM, (2017)

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Using Sequence-Predicted Contacts to Guide Template-free Protein Structure Prediction., , and . BCB, page 154-160. ACM, (2019)Mapping Multiple Minima in Protein Energy Landscapes with Evolutionary Algorithms., , and . GECCO (Companion), page 923-927. ACM, (2015)Evolutionary search for paths on protein energy landscapes., , and . GECCO (Companion), page 77-78. ACM, (2017)Selecting predictive features for recognition of hypersensitive sites of regulatory genomic sequences with an evolutionary algorithm., , and . GECCO, page 179-186. ACM, (2010)A multiscale hybrid evolutionary algorithm to obtain sample-based representations of multi-basin protein energy landscapes., and . BCB, page 269-278. ACM, (2014)Guiding protein docking with Geometric and Evolutionary Information., , , and . J. Bioinform. Comput. Biol., (2012)Automated Design of Assemblable, Modular, Synthetic Chromosomes., , , , , , , and . PPAM (2), volume 6068 of Lecture Notes in Computer Science, page 280-289. Springer, (2009)Generating Tertiary Protein Structures via an Interpretative Variational Autoencoder., , , and . CoRR, (2020)Using evolutionary computation to improve SVM classification., , and . IEEE Congress on Evolutionary Computation, page 1-8. IEEE, (2010)Computing transition paths in multiple-basin proteins with a probabilistic roadmap algorithm guided by structure data., , and . BIBM, page 35-42. IEEE Computer Society, (2015)