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    운동부하검사 시 Bruce 프로토콜과 최대젖산항정상태 시점을 이용한 Jones 프로토콜의 비교 = Comparison of Bruce and Jones protocols using maximal lactate steady state point in exercise stress testing

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    https://www.riss.kr/link?id=A106551509

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    The aim of this study was to provide effective program for setting up on exercise prescription and training to establish the appropriate exercise testing protocols of each individual characteristics. A total of 9 male collegiate student to compare with maximal oxygen uptake, maximum heart rate, exercise time by Bruce and Jones protocols using maximal lactate steady state. Statistical process was to use SPSS-PC 18.0 for Window, to do an independent Samples t-Test between two groups and to do in signigicant level p<.05. 1. There was significant difference in maximal oxygen uptake Between Bruce and Jones protocol by independent Samples t-Test(p<.001). 2. There was no significant difference in maximum heart rate by independent Samples t-Test. 3. There was significant difference in exercise time by independent Samples t-Test(p<.001). As a result the appropriate protocol of each individual characteristics play important role to measure accurate maximal oxygen uptake, maximum heart rate, exercise time analysis at exercise stress testing. Accordingly it is consider that Jones protocol using maximal lactate steady state point will have a positive effect on VO2max test.
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    The aim of this study was to provide effective program for setting up on exercise prescription and training to establish the appropriate exercise testing protocols of each individual characteristics. A total of 9 male collegiate student to compare wit...

    The aim of this study was to provide effective program for setting up on exercise prescription and training to establish the appropriate exercise testing protocols of each individual characteristics. A total of 9 male collegiate student to compare with maximal oxygen uptake, maximum heart rate, exercise time by Bruce and Jones protocols using maximal lactate steady state. Statistical process was to use SPSS-PC 18.0 for Window, to do an independent Samples t-Test between two groups and to do in signigicant level p<.05. 1. There was significant difference in maximal oxygen uptake Between Bruce and Jones protocol by independent Samples t-Test(p<.001). 2. There was no significant difference in maximum heart rate by independent Samples t-Test. 3. There was significant difference in exercise time by independent Samples t-Test(p<.001). As a result the appropriate protocol of each individual characteristics play important role to measure accurate maximal oxygen uptake, maximum heart rate, exercise time analysis at exercise stress testing. Accordingly it is consider that Jones protocol using maximal lactate steady state point will have a positive effect on VO2max test.

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    참고문헌 (Reference)

    1 Scott K. Powers., "파워운동생리학(6rd Eds)" 라이프사이언스 2008

    2 American College of Sports Medicine, "운동검사운동처방 지침(7rd Eds)" 한미의학 2006

    3 장명재, "남자대학생의 최대산소섭취량 측정을 위한 최대운동검사 부하방법의 비교분석" 한국체육학회 41 (41): 753-764, 2002

    4 Poole DC, "Validity of criteria for establishing maximal O2 uptake during ramp exercise tests" 102 (102): 403-410, 2008

    5 Smith, C.G, "The relationship between critical velocity, maximal lactate steady-state velocity and lactate turnpoint velocity in runners" 85 (85): 19-26, 2001

    6 Billat VL, "The concept of maximal lactate steady state : a bridge between biochemistry, physiology and sport science" 33 (33): 407-426, 2003

    7 Véronique L. Billat, "The Concept of Maximal Lactate Steady State" 33 (33): 407-426, 2003

    8 Winter E, "The British Association of Sport and Exercise Sciences Guide. Bases Sport and Exercise Science" Routledge 147-154, 2006

    9 Shephard, R.J., "Tests of maximum oxygen intake : a critical review" 1 (1): 99-124, 1984

    10 Edward M. Winter, "Sport and Exercise Physiology Testing Guidelines: Volume II -Exercise and Clinical Testing: The British Association of Sport and Exercise Sciences Guide" Bases Sport and Exercise Science, Routledge 2007

    1 Scott K. Powers., "파워운동생리학(6rd Eds)" 라이프사이언스 2008

    2 American College of Sports Medicine, "운동검사운동처방 지침(7rd Eds)" 한미의학 2006

    3 장명재, "남자대학생의 최대산소섭취량 측정을 위한 최대운동검사 부하방법의 비교분석" 한국체육학회 41 (41): 753-764, 2002

    4 Poole DC, "Validity of criteria for establishing maximal O2 uptake during ramp exercise tests" 102 (102): 403-410, 2008

    5 Smith, C.G, "The relationship between critical velocity, maximal lactate steady-state velocity and lactate turnpoint velocity in runners" 85 (85): 19-26, 2001

    6 Billat VL, "The concept of maximal lactate steady state : a bridge between biochemistry, physiology and sport science" 33 (33): 407-426, 2003

    7 Véronique L. Billat, "The Concept of Maximal Lactate Steady State" 33 (33): 407-426, 2003

    8 Winter E, "The British Association of Sport and Exercise Sciences Guide. Bases Sport and Exercise Science" Routledge 147-154, 2006

    9 Shephard, R.J., "Tests of maximum oxygen intake : a critical review" 1 (1): 99-124, 1984

    10 Edward M. Winter, "Sport and Exercise Physiology Testing Guidelines: Volume II -Exercise and Clinical Testing: The British Association of Sport and Exercise Sciences Guide" Bases Sport and Exercise Science, Routledge 2007

    11 Andrew M. Jones, "Oxygen Uptake Kinetics In Sport, Exercise And Medicine" Routledge 2005

    12 Bassett DR Jr, "Maximal oxygen uptake : "classical"versus"contemporary"viewpoints" 29 (29): 591-603, 1997

    13 Bruce RA, "Maximal oxygen intake and nomographic assessment of functional aerobic impairment in cardiovascular disease" 85 (85): 546-562, 1973

    14 Pringle, J.S, "Maximal lactate steady state, critical power and EMG during cycling" 88 (88): 214-226, 2002

    15 Bassett DR Jr, "Limiting factors for maximum oxygen uptake and determinants of endurance performance" 32 (32): 70-84, 2000

    16 Faude O, "Lactate threshold concepts: how valid are they?" 39 (39): 469-490, 2009

    17 Jones, A.M., "Exercise and Laboratory Test Manual" E & FN Spon 235-262, 2001

    18 Timothy D. Noakes, "Evidence that a central governor regulates exercise performance during acute hypoxia and hyperoxia" 204 (204): 3225-3234, 2001

    19 Howley ET, "Criteria for maximal oxygen uptake : review and commentary" 27 (27): 1292-1301, 1995

    20 Fernando G Beltrami, "Conventional testing methods produce submaximal values of maximum oxygen consumption" 46 (46): 23-29, 2012

    21 Robert A. Robergs, "Biochemistry of exercise-induced metabolic acidosis. American journal of physiology-Regulatory" 287 (287): 502-516, 2004

    22 Ryan Adam ,Vanhoy, "A comparison of two different treadmill protocols in measuring maximal oxygen consumption in highly trained distance runners" University of North Carolina at Chapel Hill 2012

    23 Pollock ML, "A comparative analysis of four protocols for maximal treadmill stress testing" 92 (92): 39-46, 1976

    24 James Harvey., "A Review : Analyzing How VO2Kinetics Limit Exercise Performance" 14 (14): 67-73, 2011

    25 Noakes TD., "1996 J. B. Wolffe Memorial Lecture. Challenging beliefs : ex Africa semper aliquid novi" 29 (29): 571-590, 1997

    26 Jones AM, "'Priming' exercise and O2 uptake kinetics during treadmill running" 161 (161): 182-188, 2008

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    2022 평가 계속평가 신청대상 (등재유지)
    2017-01-01 등재 우수등재학술지 선정 (계속평가)
    2013-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2010-01-01 등재 등재학술지 유지 (등재유지) KCI등재
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    2003-01-01 등재 등재학술지 선정 (등재후보2차) KCI등재
    2002-01-01 등재 등재후보 1차 PASS (등재후보1차) KCI등재후보
    2001-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 1.34 1.34 1.4
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    1.44 1.45 1.24 0.33
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