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      랫풀다운 운동방법에 따른 넓은등근, 큰가슴근, 어깨세모근, 등세모근, 위팔두갈래근의 근전도 분석 = An Electromyographic Analysis of Muscle Activation in the Latissimus Dorsi, Pectoralis Major, Deltoid, Trapezius, and Biceps Brachii Muscles According to the Type of Lat Pull Down Exercise

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      https://www.riss.kr/link?id=A103567726

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      다국어 초록 (Multilingual Abstract)

      [PURPOSE] This study investigated the differences in activation of muscles principally recruited in the front lat pull down (FLPD) exercise and in the behind the neck lat pull down (BLPD) exercise; by doing so we aimed to propose a safe and effective mode of exercise. [METHODS] The study subjects consisted of 12 healthy male individuals in their 20s, who had neither medical problems nor physical restrictions. The one repetition maximum (1RM) of the lat pull down of each participant was indirectly measured using a weight of less than 10 RMs. The patients were asked to perform 5 consecutive repeats of FLPD and of BLPD, using a weight of 75% of their 1RM; whilst the participants performed these exercises, we measured muscle activation by electromyography. Using the resulting electromyographic data, which were filtered of electromyogram artifacts, we calculated the root mean squares (RMS). With respect to a standard RMS, which was calculated using the maximum voluntary isometric contraction test, we analyzed the RMS of FLPD and BLPD and expressed them as percentages. The paired T-test was used to statistically analyze the differences in muscle activation between FLPD and BLPD. [RESULTS] We found that the posterior deltoid muscle was significantly activated during the FLPD exercise (p<.01), whereas the lower trapezius muscle was significantly activated during the BLPD exercise (p<.05). However, we did not observe any statistically significant differences in muscle activation between the two lat pull down exercises in the latissimus dorsi, the pectoralis major, the upper trapezius, the middle trapezius, and the biceps brachii muscles. [CONCLUSIONS] Considering both safety and effectiveness, we propose that individuals with shoulder injuries perform the FLPD exercise over the BLPD exercise during rehabilitation
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      [PURPOSE] This study investigated the differences in activation of muscles principally recruited in the front lat pull down (FLPD) exercise and in the behind the neck lat pull down (BLPD) exercise; by doing so we aimed to propose a safe and effective ...

      [PURPOSE] This study investigated the differences in activation of muscles principally recruited in the front lat pull down (FLPD) exercise and in the behind the neck lat pull down (BLPD) exercise; by doing so we aimed to propose a safe and effective mode of exercise. [METHODS] The study subjects consisted of 12 healthy male individuals in their 20s, who had neither medical problems nor physical restrictions. The one repetition maximum (1RM) of the lat pull down of each participant was indirectly measured using a weight of less than 10 RMs. The patients were asked to perform 5 consecutive repeats of FLPD and of BLPD, using a weight of 75% of their 1RM; whilst the participants performed these exercises, we measured muscle activation by electromyography. Using the resulting electromyographic data, which were filtered of electromyogram artifacts, we calculated the root mean squares (RMS). With respect to a standard RMS, which was calculated using the maximum voluntary isometric contraction test, we analyzed the RMS of FLPD and BLPD and expressed them as percentages. The paired T-test was used to statistically analyze the differences in muscle activation between FLPD and BLPD. [RESULTS] We found that the posterior deltoid muscle was significantly activated during the FLPD exercise (p<.01), whereas the lower trapezius muscle was significantly activated during the BLPD exercise (p<.05). However, we did not observe any statistically significant differences in muscle activation between the two lat pull down exercises in the latissimus dorsi, the pectoralis major, the upper trapezius, the middle trapezius, and the biceps brachii muscles. [CONCLUSIONS] Considering both safety and effectiveness, we propose that individuals with shoulder injuries perform the FLPD exercise over the BLPD exercise during rehabilitation

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      참고문헌 (Reference)

      1 O'Conner, B, "Weight training today" West Publisher 1989

      2 Reeves, R. K, "Weight training injuries: part 2: diagnosing and managing chronic conditions" 26 (26): 54-63, 1998

      3 Reeves, R. K, "Weight training injuries: part 1: diagnosing and managing acute conditions" 26 (26): 67-83, 1998

      4 Snyder, B. J, "Voluntary increase in latissimus dorsi muscle activity during the lat pull-down following expert instruction" 23 (23): 2204-2209, 2009

      5 Gregory J Lehman, "Variations in muscle activation levels during traditional latissimus dorsi weight training exercises:An experimental study" Springer Nature 3 (3): 4-, 2004

      6 Fees, M, "Upper extremity weight-training modifications for the injuries athlete" 26 (26): 732-742, 1998

      7 Smith, M, "Upper and lower trapezius muscle activity in subjects with subacromial impingement symptoms: is there imbalance and can taping change it" 10 (10): 45-50, 2009

      8 Centers for disease control and prevention, "Trends in strength training-United States, 1998-2004" 55 : 769-772, 2006

      9 Celik, D, "The relationship of muscle strength and pain in subacromial impingement syndrome" 45 (45): 79-84, 2011

      10 Laudner, K, "The incidence of shoulder injury among collegiate overhead athletes" 2 : 260-268, 2009

      1 O'Conner, B, "Weight training today" West Publisher 1989

      2 Reeves, R. K, "Weight training injuries: part 2: diagnosing and managing chronic conditions" 26 (26): 54-63, 1998

      3 Reeves, R. K, "Weight training injuries: part 1: diagnosing and managing acute conditions" 26 (26): 67-83, 1998

      4 Snyder, B. J, "Voluntary increase in latissimus dorsi muscle activity during the lat pull-down following expert instruction" 23 (23): 2204-2209, 2009

      5 Gregory J Lehman, "Variations in muscle activation levels during traditional latissimus dorsi weight training exercises:An experimental study" Springer Nature 3 (3): 4-, 2004

      6 Fees, M, "Upper extremity weight-training modifications for the injuries athlete" 26 (26): 732-742, 1998

      7 Smith, M, "Upper and lower trapezius muscle activity in subjects with subacromial impingement symptoms: is there imbalance and can taping change it" 10 (10): 45-50, 2009

      8 Centers for disease control and prevention, "Trends in strength training-United States, 1998-2004" 55 : 769-772, 2006

      9 Celik, D, "The relationship of muscle strength and pain in subacromial impingement syndrome" 45 (45): 79-84, 2011

      10 Laudner, K, "The incidence of shoulder injury among collegiate overhead athletes" 2 : 260-268, 2009

      11 Kolber, M. J, "Shoulder injuries attributed to resistance training: a brief review" 24 (24): 1696-1704, 2010

      12 Sigmon, C, "Preventing shoulder injuries by modifying the bench and incline presses" 18 (18): 52-53, 1996

      13 Baechle, T. R, "NSCA’s Essential of strength training and conditioning" Human kinetics 383-384, 2008

      14 Lantz, J, "Modifying the seated row exercise for athletes with shoulder injury" 25 (25): 53-56, 2003

      15 Powell, K. E, "Injury rates from walking, gardening, weightlifting, outdoor bicycling, and aerobics" 30 (30): 1246-1249, 1998

      16 Jenkins, D. B, "Hollinshead’s functional anatomy of the limbs and back" W. B. Saunders Company 2002

      17 Lusk, S. J, "Grip width and forearm orientation effects on muscle activity during the lat pull-down" 24 (24): 1895-1900, 2010

      18 Earle, R. W, "Essentials of personal training symposium workbook" NSCA certification commission 2006

      19 Sperandei, S, "Electromyographic analysis of three different types of lat pull-down" 23 (23): 2033-2038, 2009

      20 Andersen, V, "Effects of grip width on muscle strength and activation in the lat pull-down" 28 (28): 1135-1142, 2014

      21 Hislop, H. J, "Daniels and Worthingham’s muscle testing: Techniques of manual examination" W. B. Saunders Company 2002

      22 Statistics Korea, "Current status of chronic disease by small groups classified by disease classification"

      23 Criswell, E, "Cram’s introduction to surface electromyography" Jones and Bartlett Publishers 2011

      24 Duralll, C. J, "Avoiding shoulder injuries from resistance training" 23 (23): 10-18, 2001

      25 Gross, M. L, "Anterior shoulder instability in weight lifters" 21 (21): 599-603, 1993

      26 Signorile, J. F, "A comparative electromyographical investigation of muscle utilization patterns using various hand positions during the lat pull-down" 16 (16): 539-546, 2002

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2027 평가예정 재인증평가 신청대상 (재인증)
      2021-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2018-01-31 학술지명변경 한글명 : 운동학 학술지 -> 아시아 운동학 학술지
      외국어명 : The Journal of Kinesiology -> The Asian Journal of Kinesiology
      KCI등재
      2018-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2017-02-09 학술지명변경 외국어명 : The Official Journal of the Korean Academy of Kinesiology -> The Journal of Kinesiology KCI등재
      2015-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2014-09-18 학술지명변경 외국어명 : 미등록 -> The Official Journal of the Korean Academy of Kinesiology KCI등재
      2011-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2010-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2008-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.57 0.57 0.66
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.63 0.67 0.686 0.03
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