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Controlling the hypnotic drug (propofol) to maintain a stable depth of anesthesia, in dogs.

, , , , and . MeMeA, page 189-193. IEEE, (2014)

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Development of an application for remote syringe pump control in anesthesia infusion., , , , and . exp.at, page 130-132. IEEE, (2015)EMG contributes to improve Cerebral State Index modeling in dogs anesthesia., , , , , and . EMBC, page 6593-6596. IEEE, (2011)Usefulness of Brain Signals for the Detection of Loss of Consciousness in Anesthesia - Overview of the Problem and Results from a Clinical Study., , , , and . BIOSIGNALS, page 311-315. INSTICC Press, (2009)Multivariable fuzzy control for the simultaneous administration of the anaesthetic and the analgesic drugs., , , and . ECC, page 1046-1051. IEEE, (2003)Modelling and multivariable control in anaesthesia using neural-fuzzy paradigms: Part I. Classification of depth of anaesthesia and development of a patient model., , , and . Artif. Intell. Medicine, 35 (3): 195-206 (2005)Predictive Adaptive Control of the Bispectral Index of the EEG (BIS) - Using the Intravenous Anaesthetic Drug Propofol., , , , and . KES (2), volume 4252 of Lecture Notes in Computer Science, page 1248-1255. Springer, (2006)Towards automation in anaesthesia: A review.. MeMeA, page 96-101. IEEE, (2014)Comparison of Neural Networks, Fuzzy and Stochastic Prediction Models for return of consciousness after general anesthesia., , , , and . CDC/ECC, page 4827-4832. IEEE, (2005)EEG signatures at the transition between conscious and unconscious state during induction of general anesthesia with remifentanil and propofol., , , and . MeMeA, page 1-5. IEEE, (2018)Controlling the hypnotic drug (propofol) to maintain a stable depth of anesthesia, in dogs., , , , and . MeMeA, page 189-193. IEEE, (2014)