21 results on '"Cusimano, Valerio"'
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2. Increasing the pulsatility of continuos flow VAD: comparison between a valvulated outflow cannula and speed modulation by simulation
3. Decision support for medical disasters: Evaluation of the IMPRESS system in the live Palermo demo
4. TCT-375 Discordance Between Hyperemic and No Hyperemic Indexes of Coronary Stenosis Severity: Development of a Mathematical Equation, Clinical Validation, and Sensitivity Analysis (HYPERDISCO Study)
5. Designing an Active Valvulated Outflow Conduit for a Continuous-Flow Left Ventricular Assist Device to Increase Pulsatility: A Simulation Study
6. Genome analysis ofLegionella pneumophilaST901 an Italian endemic strain
7. A state predictor for continuous-time stochastic systems
8. Pattern formation on a growing oblate spheroid. an application to adult sea urchin development
9. Designing an Active Valvulated Outflow Conduit for a Continuous-Flow Left Ventricular Assist Device to Increase Pulsatility
10. Optimal Continuous-Discrete Linear Filter and Moment Equations for Nonlinear Diffusions
11. Optimal Impulsive Control With Application to Antiangiogenic Tumor Therapy
12. Multi-agent system modeling of advection-diffusion-reaction equations
13. Designing an Active Valvulated Outflow Conduit for a Continuous-Flow Left Ventricular Assist Device to Increase Pulsatility: A Simulation Study.
14. Comparison between two different cardiovascular models during a hemorrhagic shock scenario.
15. Modeling Biological Timing and Synchronization Mechanisms by Means of Interconnections of Stochastic Switches
16. Carleman discretization of impulsive systems: application to the optimal control problem of anti-angiogenic tumor therapies
17. Whi5 phosphorylation embedded in the G1/S network dynamically controls critical cell size and cell fate
18. Closed-loop control of tumor growth by means of anti-angiogenic administration
19. CLOSED-LOOP CONTROL OF TUMOR GROWTH BY MEANS OF ANTI-ANGIOGENIC ADMINISTRATION.
20. Whi5 phosphorylation embedded in the G1/S network dynamically controls critical cell size and cell fate.
21. Comparison between two different cardiovascular models during a hemorrhagic shock scenario
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