DocumentCode :
1789610
Title :
Dynamic control of seizure states with input-output linearization method based on the Pinsky-Rinzel model
Author :
Bin Deng ; Ge Li ; Jiang Wang ; Xile Wei ; Fei Su
Author_Institution :
Sch. of Electr. Eng. & Autom., Tianjin Univ., Tianjin, China
fYear :
2014
fDate :
14-16 Oct. 2014
Firstpage :
425
Lastpage :
430
Abstract :
This paper means to explore the application of input-output feedback linearization method to control the model-based firing behavior. The Pinsky-Rinzel (PR) model is used to develop the feedback controller. The epileptiform behavior is modeled by the high frequency burst of 29 Hz and the normal desired behavior is modeled by the periodic firing of 6 Hz. The epilepsy treatment is formulated as a classic control problem with current control input. The control input is applied to the soma, and the soma membrane potential is taken as output term. Simulation results show that the input-output feedback linearization control is quite effective, because the control accuracy is very high, with the controlled output tracking the desired one soon after the application of the control signal. What is more, the method is robustness of noise, the control signal and control error are both small in a range of noise intensity. Our findings demonstrate the potential value of input-output feedback linearization controller for epilepsy disease.
Keywords :
bioelectric potentials; biomembranes; diseases; feedback; linearisation techniques; medical control systems; medical disorders; neurophysiology; patient treatment; Pinsky-Rinzel model; control error; control signal; dynamic control; epilepsy disease; epilepsy treatment; epileptiform behavior; feedback controller; input-output feedback linearization method; model-based firing behavior; noise intensity; seizure states; soma membrane potential; Calcium; Epilepsy; Firing; Logic gates; Mathematical model; Noise; Process control; Pinsky-Rinzel model; closed-loop control; input-output feedback linearization; seizure states;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Biomedical Engineering and Informatics (BMEI), 2014 7th International Conference on
Conference_Location :
Dalian
Print_ISBN :
978-1-4799-5837-5
Type :
conf
DOI :
10.1109/BMEI.2014.7002812
Filename :
7002812
Link To Document :
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