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A model of phenotypic state dynamics initiates a promising approach to control heterogeneous malignant cell populations.

, , , , , and . CDC, page 2481-2487. IEEE, (2016)

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Classical Risk-Averse Control for Finite-Horizon Borel Models., and . CoRR, (2021)A Risk-Sensitive Finite-Time Reachability Approach for Safety of Stochastic Dynamic Systems., , , , , , , , , and . ACC, page 2958-2963. IEEE, (2019)Identification of Cancer Cell Population Dynamics Leveraging the Effect of Pre-Treatment for Drug Schedule Design., , , , , , and . ACC, page 1909-1916. IEEE, (2021)Toward a Scalable Upper Bound for a CVaR-LQ Problem., and . IEEE Control. Syst. Lett., (2022)Classical Risk-Averse Control for a Finite-Horizon Borel Model., and . IEEE Control. Syst. Lett., (2022)Risk-sensitive safety analysis via state-space augmentation., , , and . CoRR, (2021)Modeling differentiation-state transitions linked to therapeutic escape in triple-negative breast cancer., , , , , and . PLoS Comput. Biol., (2019)Risk-Sensitive Safety Analysis Using Conditional Value-at-Risk., , , , , and . IEEE Trans. Autom. Control., 67 (12): 6521-6536 (2022)On Exponential Utility and Conditional Value-at-Risk as Risk-Averse Performance Criteria., and . IEEE Trans. Control. Syst. Technol., 31 (6): 2555-2570 (November 2023)Position and velocity cursor mappings contribute to distinct muscle forces in simulated isometric and movement reaching., , and . BioRob, page 597-603. IEEE, (2014)