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      하체서포터 착용 이동 시의 운동역학적 분석 = Biomechanical Analysis on Locomotion with Lower Extremity Supporter

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      https://www.riss.kr/link?id=A82647204

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      다국어 초록 (Multilingual Abstract)

      The purpose of this study was to analyze the effects of the use of the lower extremity supporter to ground reaction force(GRF) & EMG in women. Five women participated in the experiment conducted in the study(age: 46.7±3.5yrs, weight: 52.3±2.2kg, lower extremity height: 74.1±0.9cm, knee height: 40.7±1.4cm). The Ground reaction force was measured by AMTI ORG-6 and the Muscle activity of the lower extremity was measured by an 8-channel surface EMG system(Noraxon Myoresearch, USA, 1000Hz). We statistically compared muscle activity and ground reaction force with and without the lower-extremity supporter by one-way repeated ANOVA. The results were as follows. First, the use of the lower extremity supporter affects the ground reaction force along the anterior-posterior axis(Y). Second, the vertical(Z-axis) reaction force on the upper part of the lower extremity supporter increase because of the difference between the interval of vertical movement. Third, the muscle activity of the lateral gastrocnemius and rectus femoris was higher in the upper part of the lower extremity supporter. Further research for example, on a comparative analysis of joint moments, the effects of direct stressor on joints. and the relationship between muscle activity and joint movement, is necessary for a better understanding of the effects of the lower-extremity supporter.
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      The purpose of this study was to analyze the effects of the use of the lower extremity supporter to ground reaction force(GRF) & EMG in women. Five women participated in the experiment conducted in the study(age: 46.7±3.5yrs, weight: 52.3±2.2kg, low...

      The purpose of this study was to analyze the effects of the use of the lower extremity supporter to ground reaction force(GRF) & EMG in women. Five women participated in the experiment conducted in the study(age: 46.7±3.5yrs, weight: 52.3±2.2kg, lower extremity height: 74.1±0.9cm, knee height: 40.7±1.4cm). The Ground reaction force was measured by AMTI ORG-6 and the Muscle activity of the lower extremity was measured by an 8-channel surface EMG system(Noraxon Myoresearch, USA, 1000Hz). We statistically compared muscle activity and ground reaction force with and without the lower-extremity supporter by one-way repeated ANOVA. The results were as follows. First, the use of the lower extremity supporter affects the ground reaction force along the anterior-posterior axis(Y). Second, the vertical(Z-axis) reaction force on the upper part of the lower extremity supporter increase because of the difference between the interval of vertical movement. Third, the muscle activity of the lateral gastrocnemius and rectus femoris was higher in the upper part of the lower extremity supporter. Further research for example, on a comparative analysis of joint moments, the effects of direct stressor on joints. and the relationship between muscle activity and joint movement, is necessary for a better understanding of the effects of the lower-extremity supporter.

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      참고문헌 (Reference)

      1 김유창, "쪼그려 앉은 작업에서 신체부담작업의 평가" 대한인간공학회 24 (24): 37-41, 2005

      2 정화식, "쪼그려 앉는 의자의 적절한 높이 평가와 착용의자의 인간공학적 디자인" 대한산업공학회 2005 (2005): 288-296, 2005

      3 김유창, "주관적 작업부하를 이용한 하체 서포터 평가에 관한 연구" 한국안전학회 23 (23): 105-110, 2008

      4 구형모, "농구 자유투 동작 시 숙련자 및 미숙련자의 근전도 및 지면 반력 분석" 한국운동역학회 19 (19): 347-357, 2009

      5 Doorenbosch, C. A., "Two strategies of Transferring from Sit-to-Stand; the activation of Monoarticular and Biarticular Muscles" 27 (27): 1299-1307, 1994

      6 Stacey, M. S, "Tibiofemoral joint contact force and knee kinematics during squatting" 27 (27): 276-286, 2008

      7 Wretenberg, P, "Tibiofemoral contact points relative to flexion angle measured with MRI" 17 : 477-485, 2002

      8 Shiramizu, K., "Tibiofemoral contact areas snd pressures in six high flexion knees" 33 (33): 403-406, 2007

      9 Roy, G, "The effect of footposition and chair height on the asymmetry of vertical forces during sit-to-stand and stand-to-sit tasks in individuals with hemiparesis" 21 (21): 585-593, 2006

      10 Jang, E. J, "The Study on the Lower Extremity Supporter for the Prevention of MSDs" Graduate School of Dongeui University 2008

      1 김유창, "쪼그려 앉은 작업에서 신체부담작업의 평가" 대한인간공학회 24 (24): 37-41, 2005

      2 정화식, "쪼그려 앉는 의자의 적절한 높이 평가와 착용의자의 인간공학적 디자인" 대한산업공학회 2005 (2005): 288-296, 2005

      3 김유창, "주관적 작업부하를 이용한 하체 서포터 평가에 관한 연구" 한국안전학회 23 (23): 105-110, 2008

      4 구형모, "농구 자유투 동작 시 숙련자 및 미숙련자의 근전도 및 지면 반력 분석" 한국운동역학회 19 (19): 347-357, 2009

      5 Doorenbosch, C. A., "Two strategies of Transferring from Sit-to-Stand; the activation of Monoarticular and Biarticular Muscles" 27 (27): 1299-1307, 1994

      6 Stacey, M. S, "Tibiofemoral joint contact force and knee kinematics during squatting" 27 (27): 276-286, 2008

      7 Wretenberg, P, "Tibiofemoral contact points relative to flexion angle measured with MRI" 17 : 477-485, 2002

      8 Shiramizu, K., "Tibiofemoral contact areas snd pressures in six high flexion knees" 33 (33): 403-406, 2007

      9 Roy, G, "The effect of footposition and chair height on the asymmetry of vertical forces during sit-to-stand and stand-to-sit tasks in individuals with hemiparesis" 21 (21): 585-593, 2006

      10 Jang, E. J, "The Study on the Lower Extremity Supporter for the Prevention of MSDs" Graduate School of Dongeui University 2008

      11 Burgess, R., "Squat, Stoop, or Something in Between" 31 (31): 143-148, 2003

      12 McAtamney., "RULA: a survey method for the investigation of work-related upper limb disorders" 24 (24): 91-99, 1993

      13 Maclntyer, N. J., "Patellofemoral joint kinematics in individuals with and without patellofemoral pain syndrome" 88 : 596-605, 2006

      14 National Institute for Occupational Safety and Health(NIOSH), "Musuloskeletal Disorders and Workplace Factors: A Critical Review of Epidemiological Evidence for Work-related Musculoskeletal Disorders of the Neck, Upper Extremity, and Lower Back"

      15 Nordander, C., "Muscular Rest nad Gap Frequency as EMG Measures of Physical Exposure; The Impact of Work Tasks and Individual Related Factors" 43 (43): 1904-1919, 2000

      16 Takeo Nagura, "Mechanical loads at the knee joint during deep flexion" 20 (20): 881-886, 2002

      17 Escamilla, R. F., "Knee biomechanics of the dynamic squat exercise" 33 : 127-141, 2001

      18 Neumann, D. A, "Kinesiology of the Musculoskeletal System; Foundations for Physical Rehabilitation" St. Louis : Mosby 2004

      19 Cram, J. R, "Introduction th surface Electromyography, 2nd ed" An Aspen Publication 1998

      20 Wall-Scheffler, C. M., "Infant carrying: the role of increased locomotory costs in early tool development" 133 (133): 841-846, 2007

      21 Reilly, D. T, "Experimental Analysis of the Quadriceps Muscle Fore and Patellofemoral Joint Reaction Force and Various Activities" 43 (43): 126-137, 1972

      22 Straker, L, "Evidence to Support using Squat, Semisquat and Stoop Techniques to Lift Low-lying Objects" 31 (31): 149-160, 2003

      23 Lee, I, S., "Evaluation of Postural load of Varying leg Posture using the Psychophysical Scaling" 21 (21): 47-65, 2002

      24 Chung, M. K, "Effect of Stool Height Holding Time on Postural Load of Squatting Postrues" 32 (32): 307-309, 2003

      25 Myung, S., S, "Dynamics Simulation for Analysis of Human Movement" Graduate School of Yonsei University 2006

      26 Li, G., "Current Techniques for Assessing Physical Exposure to Work-related Musculoskeletal Risks" 42 (42): 674-695, 1999

      27 Ashvin, T, "Contact stresses in the knee joint in deep flexion" 27 : 329-335, 2005

      28 Cannell, L. J., "A randomised clinical trial of the efficacy of drop squat or leg extension/leg curl exercises to treat clinically diagnosed jumpers knee in athletes" 35 : 60-64, 2001

      29 Oh, J. S, "A Comparison of Lower Extremities and Erector Spinae Muscle Activity according to work Postures during a Weeding with a Short Handle Hoe" 31 (31): 13-15, 2005

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2022 평가예정 계속평가 신청대상 (계속평가)
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      2015-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2004-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2002-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

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