Depth Control of Sevofluorane Anesthesia with Microcontroller Based Fuzzy Logic System

This system was designed for anesthetic agent, servofluorane, which is among the first choices of anesthesiologist for inhalation anesthesia. Sevofluorane is a halogenated volatile anesthetic with a low blood gas solubility. This facilitates smooth and rapid induction of anesthesia, allows easier ti...

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description This system was designed for anesthetic agent, servofluorane, which is among the first choices of anesthesiologist for inhalation anesthesia. Sevofluorane is a halogenated volatile anesthetic with a low blood gas solubility. This facilitates smooth and rapid induction of anesthesia, allows easier titration of anesthetic does to the desired effect during the maintenance period and permits rapid emergency and recovery at the end of the anesthesia. In this study, sevofluorane depth of anesthesia was examined through a microcontroller-based fuzzy logic control system according to the blood pressure and heart rate taken from the patient. The potential benefits of the systems are as follows: (1) To increase patients' safety and comfort, (2) To direct anesthesiologist's attention to other physiological variables which they have to keep under control by abating their tasks, (3) To make the optimum in the area of anesthetic agent, (4) To help protect the environment by using optimum anesthetic agent, (5) To economize by lessening the costs of an operation. This study will serve as a guide in developing new anesthesia control systems for patients who are in different agent and different risk groups. All the details concerning the system design were given in the paper. Presented at Annual International Conference of the IEEE Engineering in Medicine and Biology Society (23rd) held in Istanbul, Turkey on 25-28 Oct 2001. See also ADM001351 for entire conference on cd-rom., The original document contains color images.
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source DTIC Technical Reports
subjects ANESTHESIA
ANESTHETICS
BLOOD GASES
BLOOD PRESSURE
DEPTH CONTROL
FLC(FUZZY LOGIC CONTROLLER)
FUZZY LOGIC
HEART RATE
INHALATION
Medicine and Medical Research
PATIENTS
Pharmacology
RISK
SAFETY
SOLUBILITY
TITRATION
title Depth Control of Sevofluorane Anesthesia with Microcontroller Based Fuzzy Logic System
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