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  4. Home-based exercise may not decrease the insulin resistance in individuals with metabolic syndrome
 
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Home-based exercise may not decrease the insulin resistance in individuals with metabolic syndrome

Journal
Journal of Physical Activity and Health
Journal Volume
12
Journal Issue
1
Pages
74-79
Date Issued
2015
Author(s)
Chen C.-N.
LEE-MING CHUANG  
Korivi M.
Wu Y.-T.
DOI
10.1123/jpah.2013-0284
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84924919061&doi=10.1123%2fjpah.2013-0284&partnerID=40&md5=537ad0f757a091eec7bd809d4000c9ab
https://scholars.lib.ntu.edu.tw/handle/123456789/495722
Abstract
Background: This study investigated the differences in exercise self-efficacy, compliance, and effectiveness of home-based exercise in individuals with and without metabolic syndrome (MetS). Methods: One hundred and ten individuals at risk for diabetes participated in this study. Subjects were categorized into individuals with MetS and individuals without MetS. Metabolic risk factors and exercise self-efficacy were evaluated for all subjects before and after 3 months of home-based exercise. Univariate analysis of variance was used to compare the effectiveness of a home-based exercise program between individuals with and without MetS. Results: The home-based exercise program improved body mass index and lipid profile in individuals at risk for diabetes, regardless of MetS status at baseline. Individuals without MetS had higher exercise self-efficacy at baseline and performed greater exercise volume compared with individuals with MetS during the intervention. The increased exercise volume in individuals without MetS may contribute to their better control of insulin resistance than individuals with MetS. Furthermore, baseline exercise self-efficacy was correlated with exercise volume executed by subjects at home. Conclusions: We conclude that home-based exercise programs are beneficial for individuals at risk for diabetes. However, more intensive and/or supervised exercise intervention may be needed for those with MetS.
SDGs

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Other Subjects
lipid; blood; body mass; clinical trial; exercise; female; human; insulin resistance; male; metabolic syndrome X; middle aged; obesity; pathophysiology; physiology; risk factor; weight reduction; Body Mass Index; Body Mass Index; Exercise; Exercise; Female; Female; Humans; Humans; Insulin Resistance; Insulin Resistance; Lipids; Lipids; Male; Male; Metabolic Syndrome X; Metabolic Syndrome X; Middle Aged; Middle Aged; Obesity; Obesity; Risk Factors; Risk Factors; Weight Loss; Weight Loss
Publisher
Human Kinetics Publishers Inc.
Type
journal article

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