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      스쿼트 동작 시 경사기능전신진동기의 적용이 몸통 및 하지 근 활성도에 미치는 영향 = The Effect on Muscle Activation in the Trunk and Lower Limbs While Squatting with Slope-whole-body Vibration

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      https://www.riss.kr/link?id=A101747910

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      다국어 초록 (Multilingual Abstract)

      Objective : The purpose of this study was to investigate the effects of dynamic squats with slope-whole body vibration (WBV) on the trunk and lower limb in muscle activities. Method : 9 healthy women (age: 21.1±0.6 years, height: 160.5±1.4 cm, body weight: 50.5±2.4 kg) were recruited for this study. Muscle activities in the trunk and lower limb muscles, including biceps femoris (BF), rectus femoris (RF), rectus abdominum (RA), gastrocnemius (GCM), iliocostalis lumborum (IL) and tibialis anterior (TA), were recorded using an EMG measurement system. The test was performed by conducting dynamic squats with slope-WBV using frequency (10Hz, 50Hz), amplitude (0.5mm), and degree (0°, 5°). Experimental method consisted of 2-pre-sessions and 1-test-session for 20 seconds. Results : The results showed that the muscle activities of the trunk and low limb muscles increased significantly with the 5° slope and lower frequency (10Hz) except for in the TA. From this result, we confirmed that the slope and WBV could efficiently affect stimulation, enhancing muscle activities by facilitating neural control trail and muscle chain tightness. Conclusion : Utilizing the slope-WBV device while squatting could give positive effects on muscle activation in the trunk and lower limb muscles and provide neural stimulation, enhancing muscle chain of control subsystem through TVR (tonic vibration reflex).
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      Objective : The purpose of this study was to investigate the effects of dynamic squats with slope-whole body vibration (WBV) on the trunk and lower limb in muscle activities. Method : 9 healthy women (age: 21.1±0.6 years, height: 160.5±1.4 cm, body ...

      Objective : The purpose of this study was to investigate the effects of dynamic squats with slope-whole body vibration (WBV) on the trunk and lower limb in muscle activities. Method : 9 healthy women (age: 21.1±0.6 years, height: 160.5±1.4 cm, body weight: 50.5±2.4 kg) were recruited for this study. Muscle activities in the trunk and lower limb muscles, including biceps femoris (BF), rectus femoris (RF), rectus abdominum (RA), gastrocnemius (GCM), iliocostalis lumborum (IL) and tibialis anterior (TA), were recorded using an EMG measurement system. The test was performed by conducting dynamic squats with slope-WBV using frequency (10Hz, 50Hz), amplitude (0.5mm), and degree (0°, 5°). Experimental method consisted of 2-pre-sessions and 1-test-session for 20 seconds. Results : The results showed that the muscle activities of the trunk and low limb muscles increased significantly with the 5° slope and lower frequency (10Hz) except for in the TA. From this result, we confirmed that the slope and WBV could efficiently affect stimulation, enhancing muscle activities by facilitating neural control trail and muscle chain tightness. Conclusion : Utilizing the slope-WBV device while squatting could give positive effects on muscle activation in the trunk and lower limb muscles and provide neural stimulation, enhancing muscle chain of control subsystem through TVR (tonic vibration reflex).

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      참고문헌 (Reference)

      1 강승록, "전동식 운동기기의 부하방식에 따른 근력증진 효과" 한국정밀공학회 29 (29): 229-238, 2012

      2 채원식, "스쿼트 동작 시 발뒤꿈치 보조물 경사각에 따른 하지근과 척추기립근의 근육활동 비교" 한국운동역학회 17 (17): 113-121, 2007

      3 강승록, "로잉운동의 부하편차 방식 적용에 따른 상하지 생체 역학적 평가" 한국운동역학회 21 (21): 369-382, 2011

      4 Roelants, M, "Whole-body-vibration-induced increase in leg muscle activity during different squat exercises" 20 (20): 3306-3310, 2006

      5 Cardinale, M, "Whole body vibration exercise : are Cavibratio good for you?" 39 : 585-589, 2005

      6 Blackard, D. O, "Use of EMG analysis in challenging kinetic chain terminology" 31 (31): 443-448, 1999

      7 Krol, P, "Trunk muscle stabilization training plus general exercise versus general exercise only : Randomized controlled trial of patients with recurrent low back pain" 85 : 209-225, 2011

      8 Koumantakis, G. A, "Trunk muscle stabilization training plus general exercise versus general exercise only : Randomized controlled trial of patients with recurrent low back pain" 85 : 209-225, 2005

      9 Rechardson, C. A, "Therapeutic Exercise for Spinal Segmental Stabilization in LBP: Scientific Basis and Clinical Approach" Churchill Livingstone 1999

      10 Cardinale M, "The use of vibration as an exercise intervention" 31 (31): 3-7, 2003

      1 강승록, "전동식 운동기기의 부하방식에 따른 근력증진 효과" 한국정밀공학회 29 (29): 229-238, 2012

      2 채원식, "스쿼트 동작 시 발뒤꿈치 보조물 경사각에 따른 하지근과 척추기립근의 근육활동 비교" 한국운동역학회 17 (17): 113-121, 2007

      3 강승록, "로잉운동의 부하편차 방식 적용에 따른 상하지 생체 역학적 평가" 한국운동역학회 21 (21): 369-382, 2011

      4 Roelants, M, "Whole-body-vibration-induced increase in leg muscle activity during different squat exercises" 20 (20): 3306-3310, 2006

      5 Cardinale, M, "Whole body vibration exercise : are Cavibratio good for you?" 39 : 585-589, 2005

      6 Blackard, D. O, "Use of EMG analysis in challenging kinetic chain terminology" 31 (31): 443-448, 1999

      7 Krol, P, "Trunk muscle stabilization training plus general exercise versus general exercise only : Randomized controlled trial of patients with recurrent low back pain" 85 : 209-225, 2011

      8 Koumantakis, G. A, "Trunk muscle stabilization training plus general exercise versus general exercise only : Randomized controlled trial of patients with recurrent low back pain" 85 : 209-225, 2005

      9 Rechardson, C. A, "Therapeutic Exercise for Spinal Segmental Stabilization in LBP: Scientific Basis and Clinical Approach" Churchill Livingstone 1999

      10 Cardinale M, "The use of vibration as an exercise intervention" 31 (31): 3-7, 2003

      11 Bosco, C, "The effects of Extra-load Permanent Wearing on Morphological and Functional Characteristics of Leg Extensor Muscles" University Jean-Momnet 1992

      12 Taimela, S, "The effect of lumber fatigue on the ability to sence a change in lumber position" 24 : 1322-1327, 1999

      13 Irish, S. E, "The effect of closed-kinetic chain exercises and open-kinetic chain exercise on the muscle activity of vastus medialis oblique and vastus lateralis" 24 (24): 1256-1262, 2010

      14 Cardinale, M, "The Effect of Vibration on Human Performance and Hormonal Profile" Semmelwis University 2002

      15 Datta, S, "Systematic assessment of diagnostic accuracy and therapeutic utility of lumbar facet joint interventions" 12 : 437-460, 2009

      16 Nordlund, M. M, "Strength training effects of Whole-body vibration" 17 (17): 12-17, 2007

      17 Delecluse, C, "Strength increase after whole-body vibration compared with resistance training" 35 (35): 1033-1041, 2003

      18 Marras, W. S, "Occupational low back disorder causation and control" 43 (43): 880-902, 2000

      19 Bosco, C, "Influence vibration on mechanical power and electrogram activity in human arm flexor muscle" 79 : 306-311, 1999

      20 Russo, C. R, "High-frequency vibration training increases muscle power in postmeno pausal woman" 84 (84): 1854-1857, 2003

      21 Yu, C. H, "Fundamental study of lower limb muscle activity using an angled whole body vibration exercise instrument" 24 : 2437-2445, 2014

      22 Issurin, V. B, "Effect of vibratory stimulation training on maximal force and flexibility" 12 (12): 561-566, 1994

      23 Fry, A. C, "Effect of knee position on hip and knee torques during the barbell squat" 17 (17): 629-633, 2003

      24 Akuthota, A, "Core strengthening" 85 (85): 86-92, 2004

      25 Akuthota, V, "Core stability exercise principles" 7 (7): 39-44, 2008

      26 Fry, A, "Coaching consideration for the barbell squat-PartⅠ" 15 (15): 60-65, 1993

      27 Makkelsen, M, "Closed Kinetic Chain along compared to combined open and closed kinetic chain exercises for quadriceps strengthening after anterior cruciate ligament reconstraction with respect to return to sports" 20 (20): 337-342, 2000

      28 Panjabi, M. M, "Clinical spinal instability and low back pain" 13 : 371-379, 2003

      29 Hong, J, "Acute effects of whole body vibration on shoulder muscular strength and joint position sense" 25 : 17-25, 2010

      30 오주환, "8주간 데드리프트 운동 시 전신진동운동이 재활스포츠 선수의근 기능 특성에 미치는 영향" 한국운동역학회 25 (25): 343-351, 2015

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2022 평가예정 계속평가 신청대상 (계속평가)
      2021-12-01 평가 등재후보로 하락 (재인증) KCI등재후보
      2018-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      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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