ALTERNATIVE TO Q WAVE DIAGNOSIS USING CARDIAC ACTION POTENTIAL PROPAGATION TIME MEASUREMENT

The diagnosis of myocardial infarction is done by ECG through the observation of Q waves in one or more leads. The paper describes the relationship between Q waves and the propagation time of the Cardiac Action potential and a technique by which this time of propagation itself can be measured. Rathe...

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Main Authors: S. Ananthi, V. Vignesh, K. Padmanabhan
Format: Article
Language:Russian
Published: «FIRMA «SILICEA» LLC  2016-04-01
Series:Российский кардиологический журнал
Subjects:
Online Access:https://russjcardiol.elpub.ru/jour/article/view/827
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spelling doaj-d082bfe2fe2943cfb34ec2f1d372126c2021-07-28T14:02:26Zrus«FIRMA «SILICEA» LLC Российский кардиологический журнал1560-40712618-76202016-04-0104-eng17918610.15829/1560-4071-2016-4-eng-179-186693ALTERNATIVE TO Q WAVE DIAGNOSIS USING CARDIAC ACTION POTENTIAL PROPAGATION TIME MEASUREMENTS. Ananthi0V. Vignesh1K. Padmanabhan2University of MadrasUniversity of MadrasA.C. College of Technology, Anna UniversityThe diagnosis of myocardial infarction is done by ECG through the observation of Q waves in one or more leads. The paper describes the relationship between Q waves and the propagation time of the Cardiac Action potential and a technique by which this time of propagation itself can be measured. Rather than observing the Q wave pathology in its very small peak of the total QRS complex, a more refined method is thus made available for continuous patient observation. This propagation time rises from 15 ms to 35 ms or more in progressive pathological conditions. A simulation has been done which illustrates how the Q wave is generated from the travelling action potential wave in the ventricle. The authors have utilized the easy to use novel EPIC Microelectrodes from Plessey Electronics, which are jelly free and provide easy attachment by simple skin contact. Multiple sensors were placed on the chest and the propagation time was measured by differential voltages between them. An embedded controller was used to pick these signals in digitized form and calculate the time intervals. The measurement procedure is simple and highly non invasive. Records from outpatients with cardiac pathology were taken and it was verified that this AP time increases with the Q wave width. This AP propagation time is a more refined method of observing pathological changes than the Q wave, since progressive changes in cardiac condition can be indicated by changes in the millisecond values. It has been verified that the values match with to the usual Q wave width timings.https://russjcardiol.elpub.ru/jour/article/view/827electrocardiogramaction potentialq-waveaction potential propagation timeepic sensor
collection DOAJ
language Russian
format Article
sources DOAJ
author S. Ananthi
V. Vignesh
K. Padmanabhan
spellingShingle S. Ananthi
V. Vignesh
K. Padmanabhan
ALTERNATIVE TO Q WAVE DIAGNOSIS USING CARDIAC ACTION POTENTIAL PROPAGATION TIME MEASUREMENT
Российский кардиологический журнал
electrocardiogram
action potential
q-wave
action potential propagation time
epic sensor
author_facet S. Ananthi
V. Vignesh
K. Padmanabhan
author_sort S. Ananthi
title ALTERNATIVE TO Q WAVE DIAGNOSIS USING CARDIAC ACTION POTENTIAL PROPAGATION TIME MEASUREMENT
title_short ALTERNATIVE TO Q WAVE DIAGNOSIS USING CARDIAC ACTION POTENTIAL PROPAGATION TIME MEASUREMENT
title_full ALTERNATIVE TO Q WAVE DIAGNOSIS USING CARDIAC ACTION POTENTIAL PROPAGATION TIME MEASUREMENT
title_fullStr ALTERNATIVE TO Q WAVE DIAGNOSIS USING CARDIAC ACTION POTENTIAL PROPAGATION TIME MEASUREMENT
title_full_unstemmed ALTERNATIVE TO Q WAVE DIAGNOSIS USING CARDIAC ACTION POTENTIAL PROPAGATION TIME MEASUREMENT
title_sort alternative to q wave diagnosis using cardiac action potential propagation time measurement
publisher «FIRMA «SILICEA» LLC 
series Российский кардиологический журнал
issn 1560-4071
2618-7620
publishDate 2016-04-01
description The diagnosis of myocardial infarction is done by ECG through the observation of Q waves in one or more leads. The paper describes the relationship between Q waves and the propagation time of the Cardiac Action potential and a technique by which this time of propagation itself can be measured. Rather than observing the Q wave pathology in its very small peak of the total QRS complex, a more refined method is thus made available for continuous patient observation. This propagation time rises from 15 ms to 35 ms or more in progressive pathological conditions. A simulation has been done which illustrates how the Q wave is generated from the travelling action potential wave in the ventricle. The authors have utilized the easy to use novel EPIC Microelectrodes from Plessey Electronics, which are jelly free and provide easy attachment by simple skin contact. Multiple sensors were placed on the chest and the propagation time was measured by differential voltages between them. An embedded controller was used to pick these signals in digitized form and calculate the time intervals. The measurement procedure is simple and highly non invasive. Records from outpatients with cardiac pathology were taken and it was verified that this AP time increases with the Q wave width. This AP propagation time is a more refined method of observing pathological changes than the Q wave, since progressive changes in cardiac condition can be indicated by changes in the millisecond values. It has been verified that the values match with to the usual Q wave width timings.
topic electrocardiogram
action potential
q-wave
action potential propagation time
epic sensor
url https://russjcardiol.elpub.ru/jour/article/view/827
work_keys_str_mv AT sananthi alternativetoqwavediagnosisusingcardiacactionpotentialpropagationtimemeasurement
AT vvignesh alternativetoqwavediagnosisusingcardiacactionpotentialpropagationtimemeasurement
AT kpadmanabhan alternativetoqwavediagnosisusingcardiacactionpotentialpropagationtimemeasurement
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