micro cntrl based anesthesia injectr
Post on 06-Apr-2018
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MICROCONTROLLERBASED ANESTHESIA
INJECTOR
By
www.tricksworld.net.tc
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PRESENTATION PROCEEDS AS
NECCESITY OF MICROCONTROLLERBASED ANSTHESIA INJECTOR (MBAI)
COMPONENTS REQUIRED FOR THESYSTEM
WORKING OF MBAI
EXPERIMENTAL RESULTS
FUTURE ENHANCEMENTS
CONCLUSION
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NECCESITY OF MBAI
Major operations are performed to remove or reconstruct theinfected parts in the human body. These operations will lead toblood loss and pain. Therefore it is necessary to arrest the painand the blood loss. Anesthesia plays an important role in the part
of painkilling .AAI can be defined as Automatic administrationof anesthesia based on the bio-medical parameters of the patient,eliminating future side effects and the need for an anesthetist.
Anesthesia is very essential in performing painless surgery and soan Automatic administration of Anesthesia is needed for asuccessful surgery.
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COMPONENTS REQUIRED
Temperature Sensorto measure bodytemperature
Respiration Sensor to measure respiration
Heart Beat Sensor to measure heartbeat Micro-Controller to Control the overall
operation
Stepper Motor to control the movement of
the Syringe Infusion Pump
A/D Converter to convert the analog
form to a digital form.
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WORKING
By using the keypad provided along with the Microcontroller,the anesthetist can set the level of anesthesia to be administeredto the patient in terms of milliliters per hour (1ml to 1000ml).
After receiving the anesthesia level from the keypad, theMicrocontroller sets the system to administer anesthesia to the
prescribed level. It then analyses various bio-medical parametersobtained from the sensors to determine the direction of rotationof the stepper motor. The rotation of the stepper motor causesthe Infusion Pump to move in forward or in a backwarddirection and the anesthesia provided in the syringe is injected
into the body of the patient. If the level of anesthesia isdecreased to lower level than the set value, the alarm getsactivated to alert the anesthetist to refill the anesthesia in thesyringe pump to continue the process. In this design, the totaltiming and opposite flow of blood will also be detected by usingMicro Controller.
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BLOCK DIAGRAM
BLOCK DIAGRAM
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HEART BEAT SENSOR
Heart rate is our body's way of telling how hard it isgoing. It is very vital that heart beat has to be in normal
while administering anesthesia to the patient. Normal
heart beat is 72 beats per minute. A sensor is designedfor monitoring the changes in the heart beat of thehuman body. There are 2 ways of monitoring heart rateinformation from the body. They are
Electrocardiogram (ECG)
PULSE
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MICROCONTROLLER
The design approach of the microcontroller mirrors that of themicroprocessor. The microprocessor design accomplishes a very flexible andextensive repertoire of multi-byte instructions. These instructions work inhardware configurations that enables large amount of memory and IO to beconnected to address and data bus pins on the integrated circuit package
89C51 MICRO CONTROLLER
The Microcontroller that is used in this system is 89C51 manufactured byAtmel, MC, USA.
This is an advanced version of 8031. SERIES : 89C51 Family
TECHNOLOGY : CMOS
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STEPPER MOTOR
A stepper motor transforms electrical pulses into equalincrements of rotary shaft motion called steps
In Automatic Anesthesia Injector, a 4-phase steppermotor is used. Consider the four phases as S1, S2, S3and S4. The switch sequence can be used to rotate themotor half steps of 0.9 clockwise or counter clockwise.
This clockwise and counter clockwise movement of thestepper motor is coordinated with the movement of theSyringe by means of a mechanical interface.
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SYRINGE INFUSION PUMP
The Syringe Infusion pump provides uniform flow of fluid byprecisely driving the plunger of a syringe towards its barrel. Itprovides accurate and continuous flow rate for preciselydelivering anesthesia medication in critical medical care. It has an
alarm system activated by Infra-Red Sensor and limit switches.The pump will stop automatically with an alarm when the syringeis empty or if any air-bubble enters the fluid line. Glass andplastic Syringes of all sizes from 1ml to 30ml can be used in theinfusion pump. The flow rates can be adjusted from 1ml to
99ml/hr. Since it accepts other syringe size also, much lowerflow rate can be obtained by using smaller syringes.
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SOFTWARE DETAILS
A program is required which when burnt into the EPROM will operatewith the AT 89C51 to do the function of monitoring the bio-medicalparameters. The program answers the following requirements:
To read the input from the keypad provided with the microcontroller. To activate the internal timer and enable it to interrupt the AT 89C51
whenever the timer overflows. To read the parameters such as heart rate, respiration, body temperature once
in every specified interval. To check for the correctness of the parameter values and activate the alarm
set with the system when the level of Anesthesia goes down. To calculate the stepper motor movement (increase the speed or decrease the
speed) with the parameters provided by the Sensors. Continue the above until switched OFF or RESET.
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ANESTHESIA MACHINE
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EXPERIMENTAL RESULTS
The performance of the microcontroller was checked virtually byinterfacing it with the computer. The program was written in themicro controller for analyzing the parameters. Then themicrocontroller was interfaced with the PC using the MicrosoftCommunication Port interface in Visual Basic 6.0.
A Stepper motor designed in VB was made to run and the motorspeed on various conditions was noted. When the respirationrate and the temperature were constant, the motor speed wasfound to be constant. When this parameter was varied (by
manually coding the change in the microcontroller program), thestepper motor speed was also found to vary with the aid of themicrocontroller.
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FUTURE ENHANCEMENTS
Multiple parameters like Blood pressure, retinalsize, age and weight can be included ascontrolling parameters in the future.
Specialized embedded anesthesia machine canbe developed, thereby reducing size, cost andincreasing efficiency.
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CONCLUSION
Modern technologies have developed thatpromotes comfortable and better life which is
disease free. PREVENTION IS BETTER
THAN CUREand protection is intelligent thanprevention and our presentation onMICROCONTROLLER BASED
ANESTHESIA MACHINE is one of theefficient protecting systems.
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QUERIES ?
THANQ
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