DocumentCode
2544118
Title
Intelligent control of anaesthesia
Author
Linkens, D.A. ; Abbod, M.F.
Author_Institution
Sheffield Univ., UK
fYear
1998
fDate
36088
Firstpage
42401
Lastpage
42404
Abstract
Describes the structure of a real-time measuring system based on fuzzy logic. The system uses neuro-fuzzy and multi-resolution wavelet analysis for monitoring the depth of anaesthesia (DOA) based on the auditory evoked response (AER) signals, heart rate (HR) and blood pressure (BP). The AER measuring system is based on recording the brain signals using a DSP chip hosted in a PC, providing averaging and analysis using multi-resolution wavelet analysis. The analysed signal is fed to a neuro-fuzzy system (the Adaptive Network-based Fuzzy Inference System, ANFIS) where the inference takes place to obtain a measure for the DOA. Another measure for DOA is based on the cardiovascular system (HR, BP) status using a rule-based fuzzy logic classifier. The two measures are combined together using another rule-based fuzzy logic classifier to decide the final DOA. Based on the classified DOA, a target concentration is decided by a rule-based fuzzy logic controller which feeds the target to a target controller infusion (TCI) algorithm. The system forms a closed-loop controller for monitoring the DOA for patients undergoing surgical operation
Keywords
intelligent control; ANFIS; DSP chip; PC; adaptive network-based fuzzy inference system; auditory evoked response; averaging; blood pressure; brain signal recording; cardiovascular system status; closed-loop controller; depth of anaesthesia monitoring; fuzzy logic controller; heart rate; intelligent anaesthesia control; multiresolution wavelet analysis; neuro-fuzzy system; real-time measuring system; rule-based fuzzy logic classifier; surgical operation; target concentration; target controller infusion algorithm;
fLanguage
English
Publisher
iet
Conference_Titel
Intelligent Methods in Healthcare and Medical Applications (Digest No. 1998/514), IEE Colloquium on
Conference_Location
York
Type
conf
DOI
10.1049/ic:19981033
Filename
744733
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