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      KCI등재 SCOPUS

      Impact of a 12-week high-intensity interval training without caloric restriction on body composition and lipid profile in sedentary healthy overweight/obese youth

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      https://www.riss.kr/link?id=A105245903

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      다국어 초록 (Multilingual Abstract)

      Although High-intensity interval training (HIIT) has shown its effective-ness in improving body composition, cardio-respiratory fitness and lipid profile in obese adults, evidences remain limited in overweight/obese youth. This study was conducted to investigate the effect of a 12-week HIIT program without caloric restriction on body composition and lipid profile among young overweight/obese men. Twenty healthy obese youth were randomly allocated into two groups; experimental group (HIIT) and control group. The HIIT program consisted in 3 exercises sessions per week (30 sec of work at 100% maximal aerobic velocity [MAV]) interspersed by 30 sec of active recovery at 50% MAV, starting by 15 repetitions to reach 27 by the end of the program. Aerobic capaci-ty (MAV and maximum oxygen uptake [VO2max]), body composition (body mass index [BMI], waist circumference [WC], and fat mass percent) and lipid profile (triglycerides [TG] and total, high-density lipoprotein [HDL] and low-density lipoprotein [LDL] cholesterol) were determined before and after the HIIT program. Following 12 weeks of HIIT, WC, BMI (P<0.01), and fat mass percent (P<0.05) were significantly decreased. MAV and VO2max were significantly improved in the HIIT group, only. To-tal cholesterol (P<0.05) and TG (P<0.05) decreased significantly in the HIIT group, while LDL and HDL cholesterol levels remained unchanged in both groups. HIIT may be particularly useful in overweight/obese youth to improve body composition, aerobic fitness and lipid profile.
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      Although High-intensity interval training (HIIT) has shown its effective-ness in improving body composition, cardio-respiratory fitness and lipid profile in obese adults, evidences remain limited in overweight/obese youth. This study was conducted to ...

      Although High-intensity interval training (HIIT) has shown its effective-ness in improving body composition, cardio-respiratory fitness and lipid profile in obese adults, evidences remain limited in overweight/obese youth. This study was conducted to investigate the effect of a 12-week HIIT program without caloric restriction on body composition and lipid profile among young overweight/obese men. Twenty healthy obese youth were randomly allocated into two groups; experimental group (HIIT) and control group. The HIIT program consisted in 3 exercises sessions per week (30 sec of work at 100% maximal aerobic velocity [MAV]) interspersed by 30 sec of active recovery at 50% MAV, starting by 15 repetitions to reach 27 by the end of the program. Aerobic capaci-ty (MAV and maximum oxygen uptake [VO2max]), body composition (body mass index [BMI], waist circumference [WC], and fat mass percent) and lipid profile (triglycerides [TG] and total, high-density lipoprotein [HDL] and low-density lipoprotein [LDL] cholesterol) were determined before and after the HIIT program. Following 12 weeks of HIIT, WC, BMI (P<0.01), and fat mass percent (P<0.05) were significantly decreased. MAV and VO2max were significantly improved in the HIIT group, only. To-tal cholesterol (P<0.05) and TG (P<0.05) decreased significantly in the HIIT group, while LDL and HDL cholesterol levels remained unchanged in both groups. HIIT may be particularly useful in overweight/obese youth to improve body composition, aerobic fitness and lipid profile.

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      목차 (Table of Contents)

      • Abstract
      • INTRODUCTION
      • MATERIALS AND METHODS
      • Design
      • Subjects
      • Abstract
      • INTRODUCTION
      • MATERIALS AND METHODS
      • Design
      • Subjects
      • Measurements
      • Blood sampling and analysis
      • Statistical analysis
      • RESULTS
      • DISCUSSION
      • CONFLICT OF INTEREST
      • ACKNOWLEDGMENTS
      • REFERENCES
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      참고문헌 (Reference)

      1 Steinbeck K, "Young adult obesity: the transition from adolescence to emerging adulthood" 10 : 1-274, 2017

      2 Hutchesson MJ, "Weight management interventions targeting young women: a systematic review" 113 : 795-802, 2013

      3 Skleryk JR, "Two weeks of reduced-volume sprint interval or traditional exercise training does not improve metabolic functioning in sedentary obese men" 15 : 1146-1153, 2013

      4 Wewege M, "The effects of high-intensity interval training vs. moderate-intensity continuous training on body composition in overweight and obese adults: a systematic review and meta-analysis" 18 : 635-646, 2017

      5 Trapp EG, "The effects of high-intensity intermittent exercise training on fat loss and fasting insulin levels of young women" 32 : 684-691, 2008

      6 Green JS, "The effects of exercise training on abdominal visceral fat, body composition, and indicators of the metabolic syndrome in postmenopausal women with and without estrogen replacement therapy: the HERITAGE family study" 53 : 1192-1196, 2004

      7 Heydari M, "The effect of high-intensity intermittent exercise on body composition of overweight young males" 2012 : 480467-, 2012

      8 Musa DI, "The effect of a high-intensity interval training program on high-density lipoprotein cholesterol in young men" 23 : 587-592, 2009

      9 Burgomaster KA, "Six sessions of sprint interval training increases muscle oxidative potential and cycle endurance capacity in humans" 98 : 1985-1990, 2005

      10 Ouerghi N, "Plasma chemerin in young untrained men: association with cardio-metabolic traits and physical performance, and response to intensive interval training" 38 : 59-66, 2017

      1 Steinbeck K, "Young adult obesity: the transition from adolescence to emerging adulthood" 10 : 1-274, 2017

      2 Hutchesson MJ, "Weight management interventions targeting young women: a systematic review" 113 : 795-802, 2013

      3 Skleryk JR, "Two weeks of reduced-volume sprint interval or traditional exercise training does not improve metabolic functioning in sedentary obese men" 15 : 1146-1153, 2013

      4 Wewege M, "The effects of high-intensity interval training vs. moderate-intensity continuous training on body composition in overweight and obese adults: a systematic review and meta-analysis" 18 : 635-646, 2017

      5 Trapp EG, "The effects of high-intensity intermittent exercise training on fat loss and fasting insulin levels of young women" 32 : 684-691, 2008

      6 Green JS, "The effects of exercise training on abdominal visceral fat, body composition, and indicators of the metabolic syndrome in postmenopausal women with and without estrogen replacement therapy: the HERITAGE family study" 53 : 1192-1196, 2004

      7 Heydari M, "The effect of high-intensity intermittent exercise on body composition of overweight young males" 2012 : 480467-, 2012

      8 Musa DI, "The effect of a high-intensity interval training program on high-density lipoprotein cholesterol in young men" 23 : 587-592, 2009

      9 Burgomaster KA, "Six sessions of sprint interval training increases muscle oxidative potential and cycle endurance capacity in humans" 98 : 1985-1990, 2005

      10 Ouerghi N, "Plasma chemerin in young untrained men: association with cardio-metabolic traits and physical performance, and response to intensive interval training" 38 : 59-66, 2017

      11 World Health Organization, "Physical inactivity: a global public health problem" World Health Organization 2008

      12 Pedersen TR, "Lipoprotein changes and reduction in the incidence of major coronary heart disease events in the Scandinavian Simvastatin Survival Study (4S)" 97 : 1453-1460, 1998

      13 Alkahtani SA, "Interval training intensity affects energy intake compensation in obese men" 24 : 595-604, 2014

      14 Gillen JB, "Interval training in the fed or fasted state improves body composition and muscle oxidative capacity in overweight women" 21 : 2249-2255, 2013

      15 Gibala MJ, "High-intensity interval training: new insights" 20 (20): 2007

      16 Smith-Ryan AE, "High-intensity interval training: Modulating interval duration in overweight/obese men" 43 : 107-113, 2015

      17 Little JP, "High-intensity interval training for improving postprandial hyperglycemia" 85 : 451-456, 2014

      18 Lambrick D, "High-intensity interval training (HIIT) or miss: is HIIT the way forward for obese children?" 136 : 335-336, 2016

      19 Mohammad A. Alahmadi, "High-intensity Interval Training and Obesity" OMICS Publishing Group 04 (04): 2014

      20 Fisher G, "High intensity interval- vs moderate intensity- training for improving cardiometabolic health in overweight or obese males: a randomized controlled trial" 10 : 0138853-, 2015

      21 Cazorla G, "Field tests to evaluate aerobic capacity and maximal aerobic speed" 151-173, 1990

      22 Friedewald WT, "Estimation of the concentration of low-density lipoprotein cholesterol in plasma, without use of the preparative ultracentrifuge" 18 : 499-502, 1972

      23 Weston M, "Effects of low-volume high-intensity interval training (HIT) on fitness in adults: a meta-analysis of controlled and non-controlled trials" 44 : 1005-1017, 2014

      24 Batacan RB Jr, "Effects of high-intensity interval training on cardiometabolic health: a systematic review and meta-analysis of intervention studies" 51 : 494-503, 2017

      25 Sawyer BJ, "Effects of high-intensity interval training and moderate-intensity continuous training on endothelial function and cardiometabolic risk markers in obese adults" 121 : 279-288, 2016

      26 Racil G, "Effects of high vs. moderate exercise intensity during interval training on lipids and adiponectin levels in obese young females" 113 : 2531-2540, 2013

      27 송새원, "Effects of caloric restriction with varying energy density and aerobic exercise on weight change and satiety in young female adults" 한국영양학회 4 (4): 414-420, 2010

      28 Ouerghi N, "Effects of a high-intensity intermittent training program on aerobic capacity and lipid profile in trained subjects" 5 : 243-248, 2014

      29 Molina C, "Effects of 12 sessions of high intensity intermittent training and nutrition counseling on body fat in obese and overweight participants" 144 : 1254-1259, 2016

      30 Milanović Z, "Effectiveness of high-intensity interval training (HIT) and continuous endurance training for VO2max improvements: a systematic review and meta-analysis of controlled trials" 45 : 1469-1481, 2015

      31 Astorino TA, "Effect of two doses of interval training on maximal fat oxidation in sedentary women" 45 : 1878-1886, 2013

      32 Astorino TA, "Effect of periodized high intensity interval training (HIIT) on body composition and attitudes towards hunger in active men and women" 21 : 2017

      33 Koubaa A, "Effect of intermittentand continuous training on body composition cardio-respiratory fitnessand lipid profile in obese adolescents" 3 : 31-37, 2013

      34 Ouerghi N, "Effect of high-intensity interval training on plasma omentin-1 concentration in overweight/obese and normal-weight youth" 10 : 323-331, 2017

      35 Ouerghi N, "Effect of high-intensity intermittent training program on mood state in overweight/obese young men" 45 : 951-952, 2016

      36 Irving BA, "Effect of exercise training intensity on abdominal visceral fat and body composition" 40 : 1863-1872, 2008

      37 Kannan U, "Effect of exercise intensity on lipid profile in sedentary obese adults" 8 : 08-10, 2014

      38 Keating SE, "Continuous exercise but not high intensity interval training improves fat distribution in overweight adults" 2014 : 834-865, 2014

      39 Kong Z, "Comparison of high-intensity interval training and moderate-to-vigorous continuous training for cardiometabolic health and exercise enjoyment in obese young women: a randomized controlled trial" 11 : 0158589-, 2016

      40 Durnin JV, "Body fat assessed from total body density and its estimation from skinfold thickness: measurements on 481 men and women aged from 16 to 72 years" 32 : 77-97, 1974

      41 Thivel D, "Acute post-exercise energy and macronutrient intake in lean and obese youth: a systematic review and meta-analysis" 40 : 1469-1479, 2016

      42 Keating SE, "A systematic review and meta-analysis of interval training versus moderate-intensity continuous training on body adiposity" 18 : 943-964, 2017

      43 Logan GR, "A review of adolescent high-intensity interval training" 44 : 1071-1085, 2014

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2017-12-01 평가 SCOPUS 등재 (기타) KCI등재
      2016-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2013-04-16 학술지명변경 한글명 : 한국운동재활학회지 -> Journal of exercise rehabilitation KCI등재
      2013-02-12 학술지명변경 외국어명 : Korean Society of Exercise Rehabilitation -> Journal of Exercise Rehabilitation KCI등재
      2012-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2011-04-21 학술지명변경 외국어명 : Korean Journal of Exercise Rehabilitation -> Korean Society of Exercise Rehabilitation KCI등재후보
      2011-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2009-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.54 0.54 0.46
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.47 0.45 0.538 0.06
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