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A CNN Based Algorithm for the Automated Segmentation of Multiple Sclerosis Lesions.

, , , , , и . EvoApplications (1), том 6024 из Lecture Notes in Computer Science, стр. 211-220. Springer, (2010)

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Evolving Cellular Neural Networks for the Automated Segmentation of Multiple Sclerosis Lesions., , , , , и . Variants of Evolutionary Algorithms for Real-World Applications, Springer, (2012)Towards the grounding of abstract words: A Neural Network model for cognitive robots., , и . IJCNN, стр. 467-474. IEEE, (2011)Making sense of words: a robotic model for language abstraction., , и . Auton. Robots, 41 (2): 367-383 (2017)Coupling Deep Discriminative and Generative Models for Reactive Robot Planning in Human-Robot Collaboration., , , , , , , и . SMC, стр. 1869-1874. IEEE, (2019)Heteroscedastic Regression and Active Learning for Modeling Affordances in Humanoids., , , и . IEEE Trans. Cogn. Dev. Syst., 10 (2): 455-468 (2018)A CNN Based Algorithm for the Automated Segmentation of Multiple Sclerosis Lesions., , , , , и . EvoApplications (1), том 6024 из Lecture Notes in Computer Science, стр. 211-220. Springer, (2010)A Neuro-Robotics Model for the Acquisition of Higher Order Concepts in Action and Language., , и . CogSci, cognitivesciencesociety.org, (2012)A Knowledge-driven Approach for Human-Robot Collaborative Manufacturing., , , , , , , и . RobOntics@RO-MAN, том 3595 из CEUR Workshop Proceedings, CEUR-WS.org, (2023)A Bayesian approach towards affordance learning in artificial agents., , , и . ICDL-EPIROB, стр. 298-299. IEEE, (2015)Grounding speech utterances in robotics affordances: An embodied statistical language model., , , и . ICDL-EPIROB, стр. 79-86. IEEE, (2016)