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Reeva
India-Gujarat-Surat
fresher bio medical and instrumentation engineering
to apply best skills in my work and get more knowledge.
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Semester
Project Title
Third
2005 Stress meter
7th sem
2007 Cardioverter
8th sem
2008 Functional nerve stimulator
ACADEMIC SKILLS:
• Cardiovascular system and dynamics
• 8085 microprocessor
• Biomedical imaging and radiology
• Clinical engineering
• Biomedical instrumentation
• Biomedical transducer
• Prosthetics and orthotics
• Biomedical advanced imaging and technology
WORK SHOP ATTENDED:
• Work shop on robotics
• Embedded system development and robotics
ACTIVITES:
• Paper presented on Micro System Based Implantable Visual Prosthesis
• Poster presented on Rehabilitation Techniques
• Hospital and industrial training in M.E.C(medico electronic cell, Mumbai)
-King Edward Memorial hospital (K.E.M)
-Nair Hospital
-Cooper Hospital
-Rajavadi Hospital, Ghatkopar
• Seminar delivered on hospital training
• COCURICULAR ACTIVITIES:
-Sports – Cricket (captain)
_Volley ball (captain)
PERSONAL PROFILE:
Full Name Rathod Reeva Pradeep kumar
Discipline B.Tech. (Bio-medical and Instrumentation Engg.)
E-mail Address reea_211@yahoo.com
Current Address Plot no:390/1 Sector 2-b
Gandhinagar ,382007
Gujarat, India
Contact No 9909088123
Date of Birth 2 nd November 1986
Nationality Indian
Gender Female
Blood Group O(-ve)
Other Languages Known English, Hindi,Gujrati
ABSTRACT: (Cardioverter)
The function of the cardioverter is synchronizing circuit i.e. to permit placement of discharge at right point on patient’s electrocardiogram. For termination of ventricular tachycardia, aerial fibrillation and other arrhythmias, it is essential to use a defibrillator with synchronizer circuit. Unlike ventricular fibrillation, there is less direct risk for the patient with auricular fibrillation. In this case, the pump action of the ventricles still exists. However, at defibrillation of a heart auricular fibrillation, the shock may bring the ventricles into fibrillation. There is, however, a period in the heart cycle in which the danger is least. Defibrillation must take place during that period. This is called Cardioverter. With the Cardioverter, shock is delivered approximately 20 to 30 ms after the peak of the R wave of patient’s ECG.
This unit contains within it, an ECG amplifier which receives the QRS complex of ECG and uses this to trigger a time delay circuit. After an interval of the desired delay time (approximately 30 ms), the defibrillating capacitor is discharged across the chest through the electrodes.
(Functional nerve stimulator)
Our body responses to the stimulation given to it which is mainly due to the responses of the nerve present in the body. The nerve originates from the brain having sensory elements and divided into the entire body responding to the stimulus provided to its senses it and gives its reaction. Hence any damage to the nerve may lead to paralysis or dysfunction of that body part. Therefore we provide the stimulus to that body part through external circuit and check its response at different levels.
Thus ‘NERVE STIMULATOR’, is an external circuitry is a therapeutic instrument used for locating and stimulating the nerve. It is used for finding out the damage present in the nerve and the responses of the nerve at which frequency and pulse width it gives response. The voltage and current so applied is being amplified. The applied currents are galvanic and faradic currents used to stimulate the nerve under diagnosis.
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