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      팔굽관절 굽힘근 활성을 배제한 위팔두갈래근의 긴갈래와 짧은갈래의 팔굽관절 각도에 따른 뒤침동작의 근활성도 분석 = An Analysis of Muscular Activity of Supination According to the Elbow Flexion Angle Excluding the Elbow Flexor Activity of the Long and Short Head of the Biceps Brachii Muscle

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      https://www.riss.kr/link?id=A107384002

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      다국어 초록 (Multilingual Abstract)

      Purpose: This study was conducted to investigate the functional differences of the two heads of the biceps brachii by measuring the functions in supination according to pronation by the angle of the flexion of the elbow joint, except for the activities of the elbow flexors.
      Methods: This study was conducted with 25 healthy men in their 20s. At a glenohumeral-joint 0° flexion posture, angles of flexion of the elbow joint of 0°, 30°, 60°, 90°, and 120° were randomly provided, and they were asked to perform supination and pronation with an elastic band. Using an eight-channel surface electromyogram, the muscle activities of the long and short heads of the biceps brachii were measured. The activities of the short and long heads according to the angle were analyzed using a one-way ANOVA, and as a post-test, LSD was employed.
      Results: The analysis of the impact of the resistance of the elastic band in supination on the differences in the muscle activities in the short and long heads suggests there was a significant difference between 0° and 30° (p < 0.05).
      Conclusion: In supination according to forearm pronation, the long head had greater action in the early flexion posture of the elbow joint, and it is judged that the ratio of the flexion of the elbow joint according to the actions of the biceps brachii was considered small.
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      Purpose: This study was conducted to investigate the functional differences of the two heads of the biceps brachii by measuring the functions in supination according to pronation by the angle of the flexion of the elbow joint, except for the activitie...

      Purpose: This study was conducted to investigate the functional differences of the two heads of the biceps brachii by measuring the functions in supination according to pronation by the angle of the flexion of the elbow joint, except for the activities of the elbow flexors.
      Methods: This study was conducted with 25 healthy men in their 20s. At a glenohumeral-joint 0° flexion posture, angles of flexion of the elbow joint of 0°, 30°, 60°, 90°, and 120° were randomly provided, and they were asked to perform supination and pronation with an elastic band. Using an eight-channel surface electromyogram, the muscle activities of the long and short heads of the biceps brachii were measured. The activities of the short and long heads according to the angle were analyzed using a one-way ANOVA, and as a post-test, LSD was employed.
      Results: The analysis of the impact of the resistance of the elastic band in supination on the differences in the muscle activities in the short and long heads suggests there was a significant difference between 0° and 30° (p < 0.05).
      Conclusion: In supination according to forearm pronation, the long head had greater action in the early flexion posture of the elbow joint, and it is judged that the ratio of the flexion of the elbow joint according to the actions of the biceps brachii was considered small.

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      참고문헌 (Reference)

      1 김정욱, "위팔두갈래근의 긴갈래와 짧은갈래의 팔굽관절 굽힘 각도에 따른 근활성도 분석" 대한고유수용성신경근촉진법학회 18 (18): 127-132, 2020

      2 Athwal GS, "The distal biceps tendon : footprint and relevant clinical anatomy" 32 (32): 1225-1229, 2007

      3 Pagnani MJ, "Role of the long head of the biceps brachii in glenohumeral stability : a biomechanical study in cavavera" 5 (5): 255-262, 1996

      4 Neumann DA, "Kinegiology of the musculoskeletal system: foundations for rehabilitation" Beommoon-education 2011

      5 Jenkins DB, "Hollinshead’s Functional anatomy of the limbs and back" Elsevier 2003

      6 Brown JM, "Further evidence of functional differentiation within biceps brachii" 33 (33): 301-309, 1993

      7 Eames MH, "Distal biceps tendon anatomy : a cadaveric study" 89 (89): 1044-1049, 2007

      8 Hermens HJ, "Development of recommendations for SEMG sensors and sensor placement procedures" 10 (10): 361-374, 2000

      9 Lehmkuhl LD, "Brunnstrom’s clinical kinesiology" FA Davis 1983

      10 Jarret CD, "Anatomic and biomechanical analysis of the short and long head components of the distal biceps tendon" 21 (21): 942-948, 2012

      1 김정욱, "위팔두갈래근의 긴갈래와 짧은갈래의 팔굽관절 굽힘 각도에 따른 근활성도 분석" 대한고유수용성신경근촉진법학회 18 (18): 127-132, 2020

      2 Athwal GS, "The distal biceps tendon : footprint and relevant clinical anatomy" 32 (32): 1225-1229, 2007

      3 Pagnani MJ, "Role of the long head of the biceps brachii in glenohumeral stability : a biomechanical study in cavavera" 5 (5): 255-262, 1996

      4 Neumann DA, "Kinegiology of the musculoskeletal system: foundations for rehabilitation" Beommoon-education 2011

      5 Jenkins DB, "Hollinshead’s Functional anatomy of the limbs and back" Elsevier 2003

      6 Brown JM, "Further evidence of functional differentiation within biceps brachii" 33 (33): 301-309, 1993

      7 Eames MH, "Distal biceps tendon anatomy : a cadaveric study" 89 (89): 1044-1049, 2007

      8 Hermens HJ, "Development of recommendations for SEMG sensors and sensor placement procedures" 10 (10): 361-374, 2000

      9 Lehmkuhl LD, "Brunnstrom’s clinical kinesiology" FA Davis 1983

      10 Jarret CD, "Anatomic and biomechanical analysis of the short and long head components of the distal biceps tendon" 21 (21): 942-948, 2012

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