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      운동프로그램이 심부전 환자의 심폐능력, 심장기능 및 삶의 질에 미치는 효과에 대한 메타분석 = Meta-analysis of the Effects of Exercise Programs on Cardiopulmonary Capacity, Cardiac Function, and Quality of Life in Patients with Heart Failure

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      https://www.riss.kr/link?id=A108739970

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      다국어 초록 (Multilingual Abstract)

      The study conducted a meta-analysis on the effects of exercise programs on cardiorespiratory fitness, cardiac function, and quality of life in patients with heart failure. The results showed that exercise programs lasting less than 12 weeks had larger improvements in peak oxygen uptake (VO2peak), left ventricular ejection fraction, and quality of life compared to programs lasting 12 weeks or longer.
      Additionally, exercise programs consisting of less than 40 minutes had greater improvements in VO2peak and left ventricular ejection fraction compared to programs lasting 40 minutes or more, while the improvement in quality of life was greater in programs lasting 40 minutes or more than those lasting less than 40 minutes.
      This study compared and analyzed inconsistent previous studies, providing objective and systematic evidence for the design and foundational information of exercise programs for patients with heart failure.
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      The study conducted a meta-analysis on the effects of exercise programs on cardiorespiratory fitness, cardiac function, and quality of life in patients with heart failure. The results showed that exercise programs lasting less than 12 weeks had larger...

      The study conducted a meta-analysis on the effects of exercise programs on cardiorespiratory fitness, cardiac function, and quality of life in patients with heart failure. The results showed that exercise programs lasting less than 12 weeks had larger improvements in peak oxygen uptake (VO2peak), left ventricular ejection fraction, and quality of life compared to programs lasting 12 weeks or longer.
      Additionally, exercise programs consisting of less than 40 minutes had greater improvements in VO2peak and left ventricular ejection fraction compared to programs lasting 40 minutes or more, while the improvement in quality of life was greater in programs lasting 40 minutes or more than those lasting less than 40 minutes.
      This study compared and analyzed inconsistent previous studies, providing objective and systematic evidence for the design and foundational information of exercise programs for patients with heart failure.

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      참고문헌 (Reference)

      1 김아린 ; 양인숙, "운동중재가 심혈관질환자의 혈관내피전구세포에 미치는 영향: 체계적 문헌고찰" 한국산학기술학회 18 (18): 366-379, 2017

      2 안민희, "심부전 환자의 가정심장재활 프로그램이 신체기능, 우울 및 삶의 질에 미치는 효과" 전남대학교 대학원 2017

      3 통계청, "국내 사망원인순위. 2021"

      4 Yavari, M., "Volume and patterns of physical activity across the health and heart failure" 2017

      5 Downing, J., "The role of exercise training in heart failure" 58 (58): 561-569, 2011

      6 Wisløff, U., "Superior cardiovascular effect of aerobic interval training versus moderate continuous training in heart failure patients : a randomized study" 115 (115): 3086-3094, 2007

      7 Levinger, I., "Resistance training for chronic heart failure patients on beta blocker medications" 102 (102): 493-499, 2005

      8 Bonhorst, D., "Real-life data on heart failure before and after implantation of resynchronization and/or defib-rillation devices–The Síncrone study" 38 (38): 33-41, 2019

      9 Hoekst ra, T., "Quality of life and survival in patients with heart failure" 15 (15): 94-102, 2013

      10 Beswick, A. D., "Provision, uptake and cost of cardiac rehabilitation programmes: improving services to under-represented groups" 8 (8): 152-, 2004

      1 김아린 ; 양인숙, "운동중재가 심혈관질환자의 혈관내피전구세포에 미치는 영향: 체계적 문헌고찰" 한국산학기술학회 18 (18): 366-379, 2017

      2 안민희, "심부전 환자의 가정심장재활 프로그램이 신체기능, 우울 및 삶의 질에 미치는 효과" 전남대학교 대학원 2017

      3 통계청, "국내 사망원인순위. 2021"

      4 Yavari, M., "Volume and patterns of physical activity across the health and heart failure" 2017

      5 Downing, J., "The role of exercise training in heart failure" 58 (58): 561-569, 2011

      6 Wisløff, U., "Superior cardiovascular effect of aerobic interval training versus moderate continuous training in heart failure patients : a randomized study" 115 (115): 3086-3094, 2007

      7 Levinger, I., "Resistance training for chronic heart failure patients on beta blocker medications" 102 (102): 493-499, 2005

      8 Bonhorst, D., "Real-life data on heart failure before and after implantation of resynchronization and/or defib-rillation devices–The Síncrone study" 38 (38): 33-41, 2019

      9 Hoekst ra, T., "Quality of life and survival in patients with heart failure" 15 (15): 94-102, 2013

      10 Beswick, A. D., "Provision, uptake and cost of cardiac rehabilitation programmes: improving services to under-represented groups" 8 (8): 152-, 2004

      11 Moon, Y. J., "Prediction of all-cause mortality after liver transplantation using left ventricular systolic and diastolic function assessment" 14 (14): e0209100-, 2019

      12 Coats, A. J. S., "Physical function and exercise training in older patients with heart failure" 14 (14): 550-559, 2017

      13 Conraads, V. M., "Physical activity measured with implanted devices predicts patient outcome in chronic heart failure" 7 (7): 279-287, 2014

      14 Haskell, W. L., "Physical activity and public health : updated recommendation for adults from the American College of Sports Medicine and the American Heart Association" 116 (116): 1081-, 2007

      15 Thomaz, S. R., "Osteopathic manual therapy in heart failure patients : A randomized clinical trial" 22 (22): 293-299, 2018

      16 Waring, T., "Measured physical activity and 30-day rehospitalization in heart failure patients" 37 (37): 124-129, 2017

      17 Levy, D., "Long-term trends in the incidence of and survival with heart failure" 347 (347): 1397-1402, 2002

      18 van den Berg-Emons, H., "Level of activities associated with mobility during everyday life in patients with chronic congestive heart failure as measured with an activity monitor" 81 (81): 1502-1511, 2001

      19 Kosaraju, A., "Left ventricular ejection fraction"

      20 Tsut sui, H., "JCS/JHFS 2021 guideline focused update on diagnosis and treatment of acute and chronic heart failure" 85 (85): 2252-2291, 2021

      21 Doukky, R., "Impact of physical inactivity on mortality in patients with heart failure" 117 (117): 1135-1143, 2016

      22 Cider, Å., "Hydrotherapy—a new approach to improve function in the older patient with chronic heart failure" 5 (5): 527-535, 2003

      23 Benjamin, E. J., "Heart disease and stroke statistics—2018 update: a report from the American Heart Association" 137 (137): 67-492, 2018

      24 Benjamin, E. J., "Heart disease and stroke statistics —2017 update : a report from the American Heart Association" 135 (135): 146-603, 2017

      25 Juenger, J., "Health related quality of life in patients with congestive heart failure : comparison with other chronic diseases and relation to functional variables" 87 (87): 235-241, 2002

      26 Vos, T., "Global, regional, and national incidence, prevalence, and years lived with disability for 310 diseases and injuries, 1990–2015 : a systematic analysis for the Global Burden of Disease Study 2015" 388 (388): 1545-1602, 2016

      27 Long, L., "Exercise‐based cardiac rehabilitation for adults with heart failure" (1) : 2019

      28 Patti, A., "Exercise-based cardiac rehabilitation programs in heart failure patients" 17 (17): 263-271, 2021

      29 Kitzman, D. W., "Exercise training in older patients with heart failure and preserved ejection fraction : a randomized, controlled, single-blind trial" 3 (3): 659-667, 2010

      30 Smart, N. A., "Exercise training in heart failure with preserved systolic function : a randomized controlled trial of the effects on cardiac function and functional capacity" 18 (18): 295-301, 2012

      31 Edelmann, F., "Exercise training improves exercise capacity and diastolic function in patients with heart failure with preserved ejection fraction : results of the Ex-DHF(Exercise training in Diastolic Heart Failure)pilot study" 58 (58): 1780-1791, 2011

      32 Smart, N., "Exercise training for patients with heart failure : a systematic review of factors that improve mortality and morbidity" 116 (116): 693-706, 2004

      33 Del Buono, M. G., "Exercise intolerance in patients with heart failure : JACC state-of-the-art review" 73 (73): 2209-2225, 2019

      34 Ding, R., "Exercise for Cardiovascular Disease Prevention and Treatment:From Molecular to Clinical, Part 2" 31-49, 2017

      35 Bui, A. L., "Epidemiology and risk profile of heart failure" 8 (8): 30-41, 2011

      36 O’Connor, C. M., "Efficacy and safety of exercise training in patients with chronic heart failure : HF-ACTION randomized controlled trial" 301 (301): 1439-1450, 2009

      37 Willenheimer, R., "Effects on quality of life, symptoms and daily activity 6 months after termination of an exercise training programme in heart failure patients" 77 (77): 25-31, 2001

      38 Flynn, K. E., "Effects of exercise training on health status in patients with chronic heart failure : HF-ACTION randomized controlled trial" 301 (301): 1451-1459, 2009

      39 Zile, M. R., "Effects of exercise on left ventricular syst olic a nd d iastolic p ropert ies in p atient s with heart failure and a preserved ejection fraction versus heart failure and a reduced ejection fraction" 6 (6): 508-516, 2013

      40 Mandic, S., "Effects of aerobic or aerobic and resistance training on cardiorespiratory and skeletal muscle function in heart failure : a randomized controlled pilot trial" 23 (23): 207-216, 2009

      41 Dracup, K., "Effects of a home-based exercise program on clinical outcomes in heart failure" 154 (154): 877-883, 2007

      42 Sarullo, F. M., "Effect of physical training on exercise capacity, gas exchange and N-terminal pro-brain natriuretic peptide levels in patients with chronic heart failure" 13 (13): 812-817, 2006

      43 Kitzman, D. W., "Effect of endurance exercise training on endothelial function and arterial stiffness in older patients with heart failure and preserved ejection fraction : a randomized, controlled, single-blind trial" 62 (62): 584-592, 2013

      44 Haykowsky, M. J., "Determinants of exercise intolerance in elderly heart failure patients with preserved ejection fraction" 58 (58): 265-274, 2011

      45 Dontje, M. L., "Daily physical activity in stable heart failure pateint .s" 29 (29): 218-226, 2014

      46 Paulus, W. J., "Culprit mechanism(s)for exercise intolerance in heart failure with normal ejection fraction" 56 (56): 864-866, 2010

      47 Howley, E. T., "Criteria for maximal oxygen uptake : review and commentary" 27 (27): 1292-1301, 1995

      48 Beckers, P. J., "Combined endurance-resistance training vs. endurance training in patients with chronic heart failure : a prospective randomized study" 29 (29): 1858-1866, 2008

      49 Chrysohoou, C., "Cardiovascular effects of high-intensity interval aerobic training combined with strength exercise in patients with chronic heart failure. A randomized phase III clinical trial" 179 : 269-274, 2015

      50 Bol, E., "Cardiopulmonary exercise parameters in relation to all-cause mortality in patients with chronic heart failure" 72 (72): 255-263, 2000

      51 Bozkurt, B., "Cardiac rehabilitation for patients with heart failure : JACC expert panel" 77 (77): 1454-1469, 2021

      52 Duscha, B. D., "Capillary density of skeletal muscle : a contributing mechanism for exercise intolerance in class II–III chronic heart failure independent of other peripheral alterations" 33 (33): 1956-1963, 1999

      53 Myers, J., "Can maximal cardiopulmonary capacity be recognized by a plateau in oxygen uptake?" 96 (96): 1312-1316, 1989

      54 Bragazzi, N. L., "Burden of heart failure and underlying causes in 195 countries and territories from 1990 to 2017" 28 (28): 1682-1690, 2021

      55 Daw, P., "Barriers and facilitators to implementation of a home-based cardiac rehabilitation programme for patients with heart failure in the NHS : a mixed-methods study" 12 (12): e060221-, 2022

      56 Maldonado-Martín, S., "Association between 6-minute walk test distance and objective variables of functional capacity after exercise training in elderly heart failure patients with preserved ejection fraction : a randomized exercise trial" 98 (98): 600-603, 2017

      57 Stickland, M. K., "Assessing exercise limitation using cardiopulmonary exercise testing" 2012 : 2012

      58 R. J. Gibbons, "ACC/AHA guidelines for exercise t esting: a r eport of the American College o f Cardiology/American Heart Association task force on practice guidelines (Committee on Exercise Testing)" 30 (30): 260-311, 1997

      59 Jolly, K., "A randomized trial of the addition of home-based exercise to specialist heart failure nurse care : the Birmingham Rehabilitation Uptake Maximisation study for patients with Congestive Heart Failure(BRUM-CHF)study" 11 (11): 205-213, 2009

      60 Haykowsky, M. J., "A meta-analysis of the effect of exercise training on left ventricular remodeling in heart failure patients : the benefit depends on the type of training performed" 49 (49): 2329-2336, 2007

      61 Giannitsi, S., "6-minute walking test: a useful tool in t he management of heart failure p at eint .s" 13 : 1753944719870084-, 2019

      62 Pelliccia, A., "2020 ESC Guidelines on sports cardiology and exercise in patients with cardiovascular disease : The Task Force on sports cardiology and exercise in patients with cardiovascular disease of the European Society of Cardiology(ESC)" 42 (42): 17-96, 2021

      63 건강보험심사평가원, "2017~2020 국내 연도별 심부전 환자 수 추이"

      64 Ponikowski, P., "2016 ESC Guidelines for the diagnosis and treatment of acute and chronic heart failure" 74 (74): 1037-1147, 2016

      65 Yancy, C. W., "2013 ACCF/AHA guideline for the management of heart failure : a report of the American College of Cardiology Foundation/American H eart Association Task F orce o n Practice Guidelines" 62 (62): 147-239, 2013

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