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Examination of mechanisms (E-MECHANIC) of exercise-induced weight compensation: study protocol for a randomized controlled trial

BACKGROUND: Weight loss induced only by exercise is frequently less than expected, possibly because of compensatory changes in energy intake and/or energy expenditure. The purpose of the Examination of Mechanisms (E-MECHANIC) of Exercise-Induced Weight Compensation trial is to examine whether increa...

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Autores principales: Myers, Candice A, Johnson, William D, Earnest, Conrad P, Rood, Jennifer C, Tudor-Locke, Catrine, Johannsen, Neil M, Cocreham, Shannon, Harris, Melissa, Church, Timothy S, Martin, Corby K
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4057557/
https://www.ncbi.nlm.nih.gov/pubmed/24906459
http://dx.doi.org/10.1186/1745-6215-15-212
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author Myers, Candice A
Johnson, William D
Earnest, Conrad P
Rood, Jennifer C
Tudor-Locke, Catrine
Johannsen, Neil M
Cocreham, Shannon
Harris, Melissa
Church, Timothy S
Martin, Corby K
author_facet Myers, Candice A
Johnson, William D
Earnest, Conrad P
Rood, Jennifer C
Tudor-Locke, Catrine
Johannsen, Neil M
Cocreham, Shannon
Harris, Melissa
Church, Timothy S
Martin, Corby K
author_sort Myers, Candice A
collection PubMed
description BACKGROUND: Weight loss induced only by exercise is frequently less than expected, possibly because of compensatory changes in energy intake and/or energy expenditure. The purpose of the Examination of Mechanisms (E-MECHANIC) of Exercise-Induced Weight Compensation trial is to examine whether increased energy intake and/or reduced spontaneous activity or energy expenditure (outside of structured exercise) account for the less than expected, exercise-associated weight loss. METHODS/DESIGN: E-MECHANIC is a three-arm, 6-month randomized (1:1:1) controlled trial. The two intervention arms are exercise doses that reflect current recommendations for (1) general health (8 kcal/kg body weight per week (8 KKW), about 900 kcal/wk) and (2) weight loss (20 KKW, about 2,250 kcal/wk). The third arm, a nonexercise control group, will receive health information only. The sample will include a combined total of 198sedentary, overweight or obese (body mass index: ≥25 kg/m(2) to ≤45 kg/m(2)) men and women ages 18 to 65 years. The exercise dose will be supervised and tightly controlled in an exercise training laboratory. The primary outcome variables are energy intake, which will be measured using doubly labeled water (adjusted for change in energy stores) and laboratory-based food intake tests, and the discrepancy between expected weight loss and observed weight loss. Secondary outcomes include changes in resting metabolic rate (adjusted for change in body mass), activity levels (excluding structured exercise) and body composition. In an effort to guide the development of future interventions, the participants will be behaviorally phenotyped and defined as those who do compensate (that is, fail to lose the amount of weight expected) or do not compensate (that is, lose the amount of weight expected or more). DISCUSSION: In this study, we will attempt to identify underlying mechanisms to explain why exercise elicits less weight loss than expected. This information will guide the development of interventions to increase exercise-induced weight loss and maximize weight loss retention and related health benefits. TRIAL REGISTRATION: ClinicalTrials.gov ID: NCT01264406 (registration date: 20 December 2010).
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spelling pubmed-40575572014-06-15 Examination of mechanisms (E-MECHANIC) of exercise-induced weight compensation: study protocol for a randomized controlled trial Myers, Candice A Johnson, William D Earnest, Conrad P Rood, Jennifer C Tudor-Locke, Catrine Johannsen, Neil M Cocreham, Shannon Harris, Melissa Church, Timothy S Martin, Corby K Trials Study Protocol BACKGROUND: Weight loss induced only by exercise is frequently less than expected, possibly because of compensatory changes in energy intake and/or energy expenditure. The purpose of the Examination of Mechanisms (E-MECHANIC) of Exercise-Induced Weight Compensation trial is to examine whether increased energy intake and/or reduced spontaneous activity or energy expenditure (outside of structured exercise) account for the less than expected, exercise-associated weight loss. METHODS/DESIGN: E-MECHANIC is a three-arm, 6-month randomized (1:1:1) controlled trial. The two intervention arms are exercise doses that reflect current recommendations for (1) general health (8 kcal/kg body weight per week (8 KKW), about 900 kcal/wk) and (2) weight loss (20 KKW, about 2,250 kcal/wk). The third arm, a nonexercise control group, will receive health information only. The sample will include a combined total of 198sedentary, overweight or obese (body mass index: ≥25 kg/m(2) to ≤45 kg/m(2)) men and women ages 18 to 65 years. The exercise dose will be supervised and tightly controlled in an exercise training laboratory. The primary outcome variables are energy intake, which will be measured using doubly labeled water (adjusted for change in energy stores) and laboratory-based food intake tests, and the discrepancy between expected weight loss and observed weight loss. Secondary outcomes include changes in resting metabolic rate (adjusted for change in body mass), activity levels (excluding structured exercise) and body composition. In an effort to guide the development of future interventions, the participants will be behaviorally phenotyped and defined as those who do compensate (that is, fail to lose the amount of weight expected) or do not compensate (that is, lose the amount of weight expected or more). DISCUSSION: In this study, we will attempt to identify underlying mechanisms to explain why exercise elicits less weight loss than expected. This information will guide the development of interventions to increase exercise-induced weight loss and maximize weight loss retention and related health benefits. TRIAL REGISTRATION: ClinicalTrials.gov ID: NCT01264406 (registration date: 20 December 2010). BioMed Central 2014-06-07 /pmc/articles/PMC4057557/ /pubmed/24906459 http://dx.doi.org/10.1186/1745-6215-15-212 Text en Copyright © 2014 Myers et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Study Protocol
Myers, Candice A
Johnson, William D
Earnest, Conrad P
Rood, Jennifer C
Tudor-Locke, Catrine
Johannsen, Neil M
Cocreham, Shannon
Harris, Melissa
Church, Timothy S
Martin, Corby K
Examination of mechanisms (E-MECHANIC) of exercise-induced weight compensation: study protocol for a randomized controlled trial
title Examination of mechanisms (E-MECHANIC) of exercise-induced weight compensation: study protocol for a randomized controlled trial
title_full Examination of mechanisms (E-MECHANIC) of exercise-induced weight compensation: study protocol for a randomized controlled trial
title_fullStr Examination of mechanisms (E-MECHANIC) of exercise-induced weight compensation: study protocol for a randomized controlled trial
title_full_unstemmed Examination of mechanisms (E-MECHANIC) of exercise-induced weight compensation: study protocol for a randomized controlled trial
title_short Examination of mechanisms (E-MECHANIC) of exercise-induced weight compensation: study protocol for a randomized controlled trial
title_sort examination of mechanisms (e-mechanic) of exercise-induced weight compensation: study protocol for a randomized controlled trial
topic Study Protocol
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4057557/
https://www.ncbi.nlm.nih.gov/pubmed/24906459
http://dx.doi.org/10.1186/1745-6215-15-212
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