Title :
Neural Network Adaptive Output Feedback Control for Intensive Care Unit Sedation and Intraoperative Anesthesia
Author :
Haddad, Wassim M. ; Bailey, James M. ; Hayakawa, Tomohisa ; Hovakimyan, Naira
Author_Institution :
Georgia Inst. of Technol., Atlanta
fDate :
7/1/2007 12:00:00 AM
Abstract :
The potential applications of neural adaptive control for pharmacology, in general, and anesthesia and critical care unit medicine, in particular, are clearly apparent. Specifically, monitoring and controlling the depth of anesthesia in surgery is of particular importance. Nonnegative and compartmental models provide a broad framework for biological and physiological systems, including clinical pharmacology, and are well suited for developing models for closed-loop control of drug administration. In this paper, we develop a neural adaptive output feedback control framework for nonlinear uncertain nonnegative and compartmental systems with nonnegative control inputs. The proposed framework is Lyapunov-based and guarantees ultimate boundedness of the error signals. In addition, the neural adaptive controller guarantees that the physical system states remain in the nonnegative orthant of the state space. Finally, the proposed approach is used to control the infusion of the anesthetic drug propofol for maintaining a desired constant level of depth of anesthesia for noncardiac surgery.
Keywords :
Lyapunov methods; adaptive control; closed loop systems; drugs; feedback; medical control systems; neurocontrollers; nonlinear control systems; surgery; uncertain systems; Lyapunov-based; adaptive output feedback control; anesthetic drug propofol; biological system; clinical pharmacology; closed-loop control; compartmental system; critical care unit medicine; drug administration; intensive care unit sedation; intraoperative anesthesia; neural network; noncardiac surgery; nonlinear uncertain nonnegative system; physiological system; Adaptive control; Adaptive systems; Anesthesia; Biological system modeling; Control systems; Medical control systems; Neural networks; Output feedback; Programmable control; Surgery; Adaptive control; automated anesthesia; bispectral index (BIS); dynamic output feedback; electroencephalography; neural networks; nonlinear nonnegative systems; nonnegative control; set-point regulation; Anesthesia; Computer Simulation; Drug Therapy, Computer-Assisted; Electroencephalography; Expert Systems; Feedback; Hypnotics and Sedatives; Intensive Care; Models, Biological; Monitoring, Intraoperative; Neural Networks (Computer);
Journal_Title :
Neural Networks, IEEE Transactions on
DOI :
10.1109/TNN.2007.899164