Metabolic equivalent of exercise stress test explained by six-minute walk test in post coronary artery bypass graft and post percutaneous coronary intervention patients

© 2014, Medical Association of Thailand. All rights reserved. Objective: To investigate the relationship among metabolic equivalents of an exercise stress test (METs of EST), demographic parameters (age, body weight, height, BMI), peak oxygen consumption (VO<inf>2</inf> peak), and six-mi...

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Main Authors: Watesinee Khuangsirikul, Wattana Jalayondeja, Rungchai Chuanchaiyakul, Rungroj Krittayaphong, Chunhakasem Chotinaiwattarakul, Pansak Laksanabunsong
Other Authors: Mahidol University
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Published: 2018
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Online Access:https://repository.li.mahidol.ac.th/handle/123456789/34367
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spelling th-mahidol.343672018-11-09T09:43:22Z Metabolic equivalent of exercise stress test explained by six-minute walk test in post coronary artery bypass graft and post percutaneous coronary intervention patients Watesinee Khuangsirikul Wattana Jalayondeja Rungchai Chuanchaiyakul Rungroj Krittayaphong Chunhakasem Chotinaiwattarakul Pansak Laksanabunsong Mahidol University Medicine © 2014, Medical Association of Thailand. All rights reserved. Objective: To investigate the relationship among metabolic equivalents of an exercise stress test (METs of EST), demographic parameters (age, body weight, height, BMI), peak oxygen consumption (VO<inf>2</inf> peak), and six-minute walk distances (6MWD) determined from a six-minute walk test (6MWT). Material and Method: Exercise capacity was estimated by a 6MWT and EST at the sixth week post operation in post coronary artery bypass graft (post CABG, n = 17) and post percutaneous coronary intervention (post PCI, n = 13) patients. Results: METs of EST showed: high correlation (p<0.01) with VO<inf>2</inf> peak of 6MWT (r = 0.94), 6MWD (r = 0.92); muscle strength (r = 0.78), moderate correlation (p<0.01) with height (r = 0.53); negative correlation with age (r = -0.50). Low correlation was found (p<0.05) with step length (r = 0.43), and weight (r = 0.38). No correlation was found among METs of EST and rating perceived exertion (RPE) of EST and 6MWT. The multiple linear regression equation for explaining METs of EST is as follows: METs of EST = -2.94+0.02 (6MWD), (r = 0.923, R<sup>2</sup> = 0.85, p<0.001). Conclusion: The 6MWT may possibly be used as an alternative choice for estimating energy expenditure to design exercise programs for these post operation groups. 2018-11-09T02:43:22Z 2018-11-09T02:43:22Z 2014-01-01 Article Journal of the Medical Association of Thailand. Vol.97, (2014), S6-S9 01252208 01252208 2-s2.0-84929939518 https://repository.li.mahidol.ac.th/handle/123456789/34367 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84929939518&origin=inward
institution Mahidol University
building Mahidol University Library
continent Asia
country Thailand
Thailand
content_provider Mahidol University Library
collection Mahidol University Institutional Repository
topic Medicine
spellingShingle Medicine
Watesinee Khuangsirikul
Wattana Jalayondeja
Rungchai Chuanchaiyakul
Rungroj Krittayaphong
Chunhakasem Chotinaiwattarakul
Pansak Laksanabunsong
Metabolic equivalent of exercise stress test explained by six-minute walk test in post coronary artery bypass graft and post percutaneous coronary intervention patients
description © 2014, Medical Association of Thailand. All rights reserved. Objective: To investigate the relationship among metabolic equivalents of an exercise stress test (METs of EST), demographic parameters (age, body weight, height, BMI), peak oxygen consumption (VO<inf>2</inf> peak), and six-minute walk distances (6MWD) determined from a six-minute walk test (6MWT). Material and Method: Exercise capacity was estimated by a 6MWT and EST at the sixth week post operation in post coronary artery bypass graft (post CABG, n = 17) and post percutaneous coronary intervention (post PCI, n = 13) patients. Results: METs of EST showed: high correlation (p<0.01) with VO<inf>2</inf> peak of 6MWT (r = 0.94), 6MWD (r = 0.92); muscle strength (r = 0.78), moderate correlation (p<0.01) with height (r = 0.53); negative correlation with age (r = -0.50). Low correlation was found (p<0.05) with step length (r = 0.43), and weight (r = 0.38). No correlation was found among METs of EST and rating perceived exertion (RPE) of EST and 6MWT. The multiple linear regression equation for explaining METs of EST is as follows: METs of EST = -2.94+0.02 (6MWD), (r = 0.923, R<sup>2</sup> = 0.85, p<0.001). Conclusion: The 6MWT may possibly be used as an alternative choice for estimating energy expenditure to design exercise programs for these post operation groups.
author2 Mahidol University
author_facet Mahidol University
Watesinee Khuangsirikul
Wattana Jalayondeja
Rungchai Chuanchaiyakul
Rungroj Krittayaphong
Chunhakasem Chotinaiwattarakul
Pansak Laksanabunsong
format Article
author Watesinee Khuangsirikul
Wattana Jalayondeja
Rungchai Chuanchaiyakul
Rungroj Krittayaphong
Chunhakasem Chotinaiwattarakul
Pansak Laksanabunsong
author_sort Watesinee Khuangsirikul
title Metabolic equivalent of exercise stress test explained by six-minute walk test in post coronary artery bypass graft and post percutaneous coronary intervention patients
title_short Metabolic equivalent of exercise stress test explained by six-minute walk test in post coronary artery bypass graft and post percutaneous coronary intervention patients
title_full Metabolic equivalent of exercise stress test explained by six-minute walk test in post coronary artery bypass graft and post percutaneous coronary intervention patients
title_fullStr Metabolic equivalent of exercise stress test explained by six-minute walk test in post coronary artery bypass graft and post percutaneous coronary intervention patients
title_full_unstemmed Metabolic equivalent of exercise stress test explained by six-minute walk test in post coronary artery bypass graft and post percutaneous coronary intervention patients
title_sort metabolic equivalent of exercise stress test explained by six-minute walk test in post coronary artery bypass graft and post percutaneous coronary intervention patients
publishDate 2018
url https://repository.li.mahidol.ac.th/handle/123456789/34367
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