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    알파인 스킹 시 카빙 턴과 베이직 패러렐 턴 간의 신체중심 및 하지관절의 운동학적 패턴 비교 = Comparisons of Center of Mass and Lower Extremity Kinematic Patterns between Carved and Basic Parallel Turn during Alpine Skiing

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    https://www.riss.kr/link?id=A100120630

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    This study investigated the center of mass and lower extremity kinematic patterns between carved and basic paralell turn during alpine skiing. Six experienced skiers (age: 20.67±4.72 yrs, body mass: 72.67±7.15 kg, height: 171.00±5.51 cm) participated in this study. Each skier were asked to perform carved and basic paralell turn on a 22.95° groomed slope. Each turn was divided into the initiation phase, steering phase 1 and 2. The results of this study show that the carved turn spent significantly less running time than basic paralell turn at all three phases (p<.05). Also vertical displacement of the center of mass was significantly greater in carved turn at all three phases, whereas inward leaning angle of the center of mass was significantly greater in carved turn at the steering phase 1 and 2 (p<.05). Bilateral knee and hip joint angle were significantly greater in basic paralell turn at the initiation phase and the steering phase 2 (p<.05). On the other hand, left knee and hip joint angle were significantly greater in basic paralell turn at the steering phase 1 (p<.05). In order to perform successful carved turn, we suggest that skiers should coordinate bilateral knee and hip joint angles to adjust the center of mass, depending on three ski turn phases.
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    This study investigated the center of mass and lower extremity kinematic patterns between carved and basic paralell turn during alpine skiing. Six experienced skiers (age: 20.67±4.72 yrs, body mass: 72.67±7.15 kg, height: 171.00±5.51 cm) participat...

    This study investigated the center of mass and lower extremity kinematic patterns between carved and basic paralell turn during alpine skiing. Six experienced skiers (age: 20.67±4.72 yrs, body mass: 72.67±7.15 kg, height: 171.00±5.51 cm) participated in this study. Each skier were asked to perform carved and basic paralell turn on a 22.95° groomed slope. Each turn was divided into the initiation phase, steering phase 1 and 2. The results of this study show that the carved turn spent significantly less running time than basic paralell turn at all three phases (p<.05). Also vertical displacement of the center of mass was significantly greater in carved turn at all three phases, whereas inward leaning angle of the center of mass was significantly greater in carved turn at the steering phase 1 and 2 (p<.05). Bilateral knee and hip joint angle were significantly greater in basic paralell turn at the initiation phase and the steering phase 2 (p<.05). On the other hand, left knee and hip joint angle were significantly greater in basic paralell turn at the steering phase 1 (p<.05). In order to perform successful carved turn, we suggest that skiers should coordinate bilateral knee and hip joint angles to adjust the center of mass, depending on three ski turn phases.

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    참고문헌 (Reference)

    1 김주년, "알파인 스킹 시 상급 스키어와 중급 스키어 간의 족저압력 패턴 비교" 한국운동역학회 24 (24): 19-26, 2014

    2 Klous, M., "Three-dimensional knee joint loading in alpine skiing : a comparison between a carved and a skidded turn" 28 (28): 655-664, 2012

    3 Müller, E., "Salzburg Skiing for the Elderly Study: influence of alpine skiing on aerobic capacity, strength, power, and balance" 21 (21): 9-22, 2011

    4 Scheiber, P., "Relationships between biomechanics and physiology in older, recreational alpine skiers" 22 (22): 49-57, 2012

    5 Kröll, J., "Quadriceps muscle function during recreational alpine skiing" 42 (42): 1545-1556, 2010

    6 Federolf, P., "Parameter study sing a finite element simulation of a carving alpine ski to investigate the turn radius and its dependence on edging angle, load, and snow properties" 12 (12): 135-141, 2010

    7 Hintermeister, R. A., "Muscle activity n slalom and giant slalom skiing" 27 (27): 315-322, 1995

    8 Hintermeister, R. A., "Muscle activity in wedge, parallel, and giant slalom skiing" 29 (29): 548-553, 1997

    9 Supej, M., "Mechanical parameters as predictors of performance in alpine World Cup slalom racing" 21 (21): e72-e81, 2011

    10 Maxwell, S. M., "Measurement of strength and loading variables on the knee during alpine skiing" 22 : 609-624, 1989

    1 김주년, "알파인 스킹 시 상급 스키어와 중급 스키어 간의 족저압력 패턴 비교" 한국운동역학회 24 (24): 19-26, 2014

    2 Klous, M., "Three-dimensional knee joint loading in alpine skiing : a comparison between a carved and a skidded turn" 28 (28): 655-664, 2012

    3 Müller, E., "Salzburg Skiing for the Elderly Study: influence of alpine skiing on aerobic capacity, strength, power, and balance" 21 (21): 9-22, 2011

    4 Scheiber, P., "Relationships between biomechanics and physiology in older, recreational alpine skiers" 22 (22): 49-57, 2012

    5 Kröll, J., "Quadriceps muscle function during recreational alpine skiing" 42 (42): 1545-1556, 2010

    6 Federolf, P., "Parameter study sing a finite element simulation of a carving alpine ski to investigate the turn radius and its dependence on edging angle, load, and snow properties" 12 (12): 135-141, 2010

    7 Hintermeister, R. A., "Muscle activity n slalom and giant slalom skiing" 27 (27): 315-322, 1995

    8 Hintermeister, R. A., "Muscle activity in wedge, parallel, and giant slalom skiing" 29 (29): 548-553, 1997

    9 Supej, M., "Mechanical parameters as predictors of performance in alpine World Cup slalom racing" 21 (21): e72-e81, 2011

    10 Maxwell, S. M., "Measurement of strength and loading variables on the knee during alpine skiing" 22 : 609-624, 1989

    11 Park, S. K, "Lower extremity kinematics of ski motion on hills" 2013

    12 Vaverka, F., "Kinetic analysis of ski turns based on measured ground reaction forces" 28 (28): 41-47, 2012

    13 Federolf, P., "Impact of skier actions on the gliding times in alpine skiing" 18 (18): 790-797, 2008

    14 Supej, M., "How gate setup and turn radii influence energy dissipation in slalom ski racing" 26 (26): 454-464, 2010

    15 Supej, M., "Differential specific mechanical energy as a quality parameter in racing alpine skiing" 24 (24): 121-129, 2008

    16 Stricker, G., "Determination of forces in alpine skiing and snowboarding : Validation of a mobile data acquisition system" 10 (10): 31-41, 2010

    17 Müller, E., "Comparisons of the ski turn techniques of experienced and intermediate skiers" 16 (16): 545-559, 1998

    18 Heinrich, D., "Calculation of the contact pressure between ski and snow during a carved turn in alpine skiing" 20 (20): 485-492, 2010

    19 Greenwald, R, "Biomechanics of carving skis" 49 (49):

    20 Müller, E., "Biomechanical aspects of new techniques in alpine skiing and ski-jumping" 21 (21): 679-692, 2003

    21 Supej, M., "Aerodynamic drag is not the major determinant of performance during giant slalom skiing at the elite level" 23 (23): e38-e47, 2013

    22 Yoneyama, T., "A ski robot system for qualitative modelling of the carved turn" 11 (11): 131-141, 2009

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    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.76 0.76 0.75
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.79 0.68 0.864 0.14
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