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TPOT: A Tree-based Pipeline Optimization Tool for Automating Machine Learning.

, and . AutoML@ICML, volume 64 of JMLR Workshop and Conference Proceedings, page 66-74. JMLR.org, (2016)

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GECCO-2006 Highlights: Biological Applications, and . SIGEVOlution, 1 (3): 23 (September 2006)Solving Complex Problems In Human Genetics Using Genetic Programming, , and . Genetic Programming Theory and Practice V, chapter 5, Springer, Ann Arbor, (17-19May 2007)Optimization of neural network architecture using genetic programming improves detection and modeling of gene-gene interactions in studies of human diseases, , , , and . BMC Bioinformatics, (7 July 2003)Genetic programming neural networks: A powerful bioinformatics tool for human genetics, , , , and . Applied Soft Computing, 7 (1): 471--479 (January 2007)Optimization of Neural Networks using Genetic Programming to Improve Detection and Modeling of Gene-Gene Interactions in Studies of Human Diseases, , , , and . GECCO 2003: Proceedings of the Bird of a Feather Workshops, Genetic and Evolutionary Computation Conference, page 72--74. Chigaco, AAAI, (11 July 2003)Integrated analysis of genetic, genomic, and proteomic data, , and . Expert Review of Proteomics, 1 (1): 67--75 (2004)Exploring Interestingness in a Computational Evolution System for the Genome-Wide Genetic Analysis of Alzheimer's Disease., , , and . GPTP, page 31-45. Springer, (2013)Systems biology thought experiments in human genetics using artificial life and grammatical evolution, and . Artificial Life XI Ninth International Conference on the Simulation and Synthesis of Living Systems, page 581--586. Boston, Massachusetts, The MIT Press, (12-15 September 2004)Toward the automated analysis of complex diseases in genome-wide association studies using genetic programming., , and . GECCO, page 489-496. ACM, (2017)Towards human-human-computer interaction for biologically-inspired problem-solving in human genetics., , and . GECCO, page 432-433. ACM, (2007)