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    수중운동이 여성노인 장애물보행 시 하지 협응에 미치는 영향 - 훈련 및 훈련잔여효과 중심으로 - = Effects of a Water Exercise on the Lower Extremities Coordination during Obstacle Gait in the Female Elderly - Focusing on Training and Detraining Effects -

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    https://www.riss.kr/link?id=A100054308

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    The purpose of this study was to investigate the training and detraining effects of a 8-week water exercise on lower extremities coordination during obstacle gait in the female elderly. Eight elderly participants (age: 76.58±4.97 yrs, height: 148.88±7.19 cm, body mass: 56.62±6.82 kg, and leg length: 82.36±2.98 cm), who stayed at the Seoul K welfare center, were recruited for this study. All participants had no history of orthopedic abnormality within the past 1 year and completed the aquatic exercise program which lasted for 8 weeks. To identify the training and detraining effect of 8 weeks of water exercise, a 3-D motion analysis with 7 infrared cameras and one force plate sampling frequency set at 100 Hz and 1,000 Hz, respectively, was performed. A two-way ANOVA was performed to find training and detraining effects among diferent obstacle heights. In this study significant level was set at .05. Significant training effects of LTS (lead foot thigh and shank) coordination in all obstacle height were found (p<.05). It is also found that the training effect of LTS remained 37%, 58%, and 25% in obstacle height of 30%, 40%, and 50%, respectively. Lead foot showed the greater detraining effect of coordination compared with trail foot, and SF (shank and foot) coordination revealed better detraining effects of coordination compare with TS (thigh and shank) in both feet. Based on the findings, a 8 week water exercise give an positive effects to the elderly in terms of segment cooperation which potentially helps reducing their accident falls. The magnitude of detraining may also help the elderly to find the retraining moment.
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    The purpose of this study was to investigate the training and detraining effects of a 8-week water exercise on lower extremities coordination during obstacle gait in the female elderly. Eight elderly participants (age: 76.58±4.97 yrs, height: 148.88�...

    The purpose of this study was to investigate the training and detraining effects of a 8-week water exercise on lower extremities coordination during obstacle gait in the female elderly. Eight elderly participants (age: 76.58±4.97 yrs, height: 148.88±7.19 cm, body mass: 56.62±6.82 kg, and leg length: 82.36±2.98 cm), who stayed at the Seoul K welfare center, were recruited for this study. All participants had no history of orthopedic abnormality within the past 1 year and completed the aquatic exercise program which lasted for 8 weeks. To identify the training and detraining effect of 8 weeks of water exercise, a 3-D motion analysis with 7 infrared cameras and one force plate sampling frequency set at 100 Hz and 1,000 Hz, respectively, was performed. A two-way ANOVA was performed to find training and detraining effects among diferent obstacle heights. In this study significant level was set at .05. Significant training effects of LTS (lead foot thigh and shank) coordination in all obstacle height were found (p<.05). It is also found that the training effect of LTS remained 37%, 58%, and 25% in obstacle height of 30%, 40%, and 50%, respectively. Lead foot showed the greater detraining effect of coordination compared with trail foot, and SF (shank and foot) coordination revealed better detraining effects of coordination compare with TS (thigh and shank) in both feet. Based on the findings, a 8 week water exercise give an positive effects to the elderly in terms of segment cooperation which potentially helps reducing their accident falls. The magnitude of detraining may also help the elderly to find the retraining moment.

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    참고문헌 (Reference)

    1 이상열, "수중 걷기 운동이 우측 편마비 환자의 발 운동학과 보행 속도에 미치는 영향" 한국콘텐츠학회 9 (9): 674-682, 2009

    2 Patla, A. E., "Visual control of limb trajectory over obstacles during locomotion : effect of obstacle height and width" 1 (1): 45-60, 1993

    3 Jung, J., "The effect of obstacle training in water on static balance of chronic stroke patients" 26 (26): 437-440, 2014

    4 Kalapotharakos, V. I., "The effect of moderate resistance strength training and detreaining on muscle strength and power in older men" 30 (30): 109-113, 2007

    5 Zhang, C., "Strategies of stepping over obstacles : The effects of long-term exercise in older adults" 34 (34): 191-196, 2011

    6 Eng, J. J., "Strategies for recovery from a trip in early and late swing during human walking" 102 (102): 339-349, 1994

    7 Chen, H. C., "Stepping over obstacles : gait patterns of healthy young and old adults" 46 (46): 196-203, 1991

    8 Hartholt, K. A., "Societal consequences of falls in the older population : injuries, healthcare costs, and long-term reduced quality of life" 71 (71): 748-753, 2011

    9 Statistics Korea, "Population and housing census"

    10 Chou, L. S., "Motion of the whole body's center of mass when stepping over obstacles of different heights" 13 (13): 17-26, 2001

    1 이상열, "수중 걷기 운동이 우측 편마비 환자의 발 운동학과 보행 속도에 미치는 영향" 한국콘텐츠학회 9 (9): 674-682, 2009

    2 Patla, A. E., "Visual control of limb trajectory over obstacles during locomotion : effect of obstacle height and width" 1 (1): 45-60, 1993

    3 Jung, J., "The effect of obstacle training in water on static balance of chronic stroke patients" 26 (26): 437-440, 2014

    4 Kalapotharakos, V. I., "The effect of moderate resistance strength training and detreaining on muscle strength and power in older men" 30 (30): 109-113, 2007

    5 Zhang, C., "Strategies of stepping over obstacles : The effects of long-term exercise in older adults" 34 (34): 191-196, 2011

    6 Eng, J. J., "Strategies for recovery from a trip in early and late swing during human walking" 102 (102): 339-349, 1994

    7 Chen, H. C., "Stepping over obstacles : gait patterns of healthy young and old adults" 46 (46): 196-203, 1991

    8 Hartholt, K. A., "Societal consequences of falls in the older population : injuries, healthcare costs, and long-term reduced quality of life" 71 (71): 748-753, 2011

    9 Statistics Korea, "Population and housing census"

    10 Chou, L. S., "Motion of the whole body's center of mass when stepping over obstacles of different heights" 13 (13): 17-26, 2001

    11 Austin, G. P., "Kinematic analysis of obstacle clearance during locomotion" 10 (10): 109-120, 1999

    12 Keller Chandra, S., "Gaze strategies for avoiding obstacles : Differences between young and elderly subjects" 34 (34): 340-346, 2011

    13 Statistics Korea, "Future population projection"

    14 Winter, D. A., "Foot trajectory in human gait : a precise and multifactorial motor control task" 72 (72): 45-53, 1992

    15 Hill, K., "Falls among healthy, community-dwelling, older women : a prospective study of frequency, circumstances, consequences and prediction accuracy" 23 (23): 41-48, 1999

    16 Krasovsky, T., "Effects of walking speed on gait stability and interlimb coordination in younger and older adults" 39 (39): 378-385, 2014

    17 Tokmakidis, S. P., "Effects of detraining on muscle strength and mass after high or moderate intensity of resistance training in older adults" 29 (29): 316-319, 2009

    18 Katsura, Y., "Effects of aquatic exercise training using waterresistance equipment in elderly" 108 (108): 957-964, 2010

    19 Wang, T. J., "Effects of aquatic exercise on flexibility, strength and aerobic fitness in adults with osteoarthritis of the hip or knee" 57 (57): 141-152, 2007

    20 Hess, J. A., "Effect of high-intensity strength-training on functional measures of balance ability in balance-impaired older adults" 28 (28): 582-590, 2005

    21 Kelso, J. A. S., "Dynamic Patterns : the Self-Organization of Brain and Behavior" MIT Press 1995

    22 Harris, C., "Detraining in the older adults : effects of prior training intensity on strength retention" 21 (21): 813-818, 2007

    23 Chiu, S. L., "Concussion induces gait inter-joint coordination variability under conditions of divided attention and obstacle crossing" 38 (38): 717-722, 2013

    24 Yamada, M., "Complex obstacle negotiation exercise can prevent falls in community-dwelling elderly Japanese aged 75 years and older" 12 (12): 461-467, 2011

    25 Lu, T. W., "Comparisons of the inter-joint coordination between leading and trailing limbs when crossing obstacles of different heights" 27 (27): 309-315, 2008

    26 Wang, T. M., "Bilateral knee osteoarthritis does not affect inter-joint coordination in older adults with gait deviations during obstacle-crossing" 42 (42): 2349-2356, 2009

    27 Said, C. M., "Balance during obstacle crossing following stroke" 27 (27): 23-30, 2008

    28 Weerdesteyn, V., "Advancing age progressively affects obstacle avoidance skills in the elderly" 24 (24): 865-880, 2005

    29 Rahmann, A. E., "A specific inpatient aquatic physiotherapy program improves strength after total hip or knee replacement surgery : a randomized controlled trial" 90 (90): 745-755, 2009

    30 Hamill, J., "A dynamical systems approach to lower extremity running injuries" 14 (14): 297-308, 1999

    31 김석범, "12주간의 수중 운동을 수행 한 여성노인의 장애물 보행 특성" 한국운동역학회 19 (19): 539-547, 2009

    32 최평화, "12주간 수중운동이 노인여성의 장애물보행에 미치는 운동학 및 운동역학적 영향" 한국운동역학회 20 (20): 129-137, 2010

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    학술지 이력

    학술지 이력
    연월일 이력구분 이력상세 등재구분
    2022 평가 계속평가 신청대상 (계속평가)
    2021-12-01 등재 등재후보로 하락 (재인증) KCI등재후보
    2018-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2015-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2011-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2009-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2007-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2004-01-01 등재 등재학술지 선정 (등재후보2차) KCI등재
    2002-01-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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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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