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Improvement of Kinetic, Kinematic, and Qualitative Performance Variables of the Power Clean With the Hook Grip

International journal of sports physiology and performance, v.14 no.3, 2019년, pp.378 - 384  

Oranchuk, Dustin J. ,  Drinkwater, Eric J. ,  Lindsay, Riki S. ,  Helms, Eric R. ,  Harbour, Eric T. ,  Storey, Adam G.

초록이 없습니다.

참고문헌 (60)

  1. Validation of an optical encoder during free weight resistance movements and analysis of bench press sticking point power during fatigue Drinkwater 510 J Strength Cond Res 21 2007 

  2. Unique aspects of competitive weightlifting: performance, training and physiology Storey 769 Sports Med 42 2012 10.1007/BF03262294 

  3. Changes in bar-path kinematics and kinetics after power-clean training Winchester 177 J Strength Cond Res 19 2005 

  4. Does performance of hang power clean differentiate performance of jumping, sprinting, and changing of direction? Hori 412 J Strength Cond Res 22 2008 10.1519/JSC.0b013e318166052b 

  5. Validation of an optical encoder during free weight resistance movements and analysis of bench press sticking point power during fatigue Drinkwater 510 J Strength Cond Res 21 2007 

  6. Optimal loading for peak power output during the hang power clean in professional rugby players Kilduff 260 Int J Sports Physiol Perform 2 2007 10.1123/ijspp.2.3.260 

  7. Validation of power measurement techniques in dynamic lower body resistance exercises Cormie 103 J Appl Biomech 23 2007 10.1123/jab.23.2.103 

  8. Eight weeks of strength and power training improves club head speed in collegiate golfers Oranchuk J Strength Cond Res 

  9. Optimal loading for maximal power output during lower-body resistance exercises Cormie 340 Med Sci Sports Exerc 39 2007 10.1249/01.mss.0000246993.71599.bf 

  10. Effect of Olympic and traditional resistance training on vertical jump improvement in high school boys Channell 1522 J Strength Cond Res 22 2008 10.1519/JSC.0b013e318181a3d0 

  11. Biomechanical changes in the Olympic weightlifting technique of the snatch and clean and jerk from submaximal to maximal loads Häkkinen 57 Scand J Sports Sci 6 1984 

  12. A rationale for assessing the lower-body power profile in team sport athletes Nibali 388 J Strength Cond Res 27 2013 10.1519/JSC.0b013e3182576feb 

  13. Eight weeks of strength and power training improves club head speed in collegiate golfers Oranchuk J Strength Cond Res 

  14. Force-time-curve comparison between weight-lifting derivatives Suchomel 431 Int J Sports Physiol Perform 12 2017 10.1123/ijspp.2016-0147 

  15. Strength and conditioning practices of National Hockey League strength and conditioning coaches Ebben 889 J Strength Cond Res 18 2004 

  16. The hook grip Tsuruda 40 Natl Str Cond Assoc J 11 1989 10.1519/0744-0049(1989)011<0040:THG>2.3.CO;2 

  17. Teaching the first pull Favre 77 Strength Cond J 34 2012 10.1519/SSC.0b013e31826e17dc 

  18. Comparison of Olympic vs traditional power lifting training programs in football players Hoffman 129 J Strength Cond Res 18 2004 

  19. The effect of loading on kinematic and kinetic variables during the midthigh clean pull Comfort 1208 J Strength Cond Res 26 2012 10.1519/JSC.0b013e3182510827n 

  20. The effect of loading on kinematic and kinetic variables during the midthigh clean pull Comfort 1208 J Strength Cond Res 26 2012 10.1519/JSC.0b013e3182510827n 

  21. Effect size estimates: current use, calculations, and interpretation Fritz 2 J Exp Psychol Gen 141 2012 10.1037/a0024338 

  22. A rationale for assessing the lower-body power profile in team sport athletes Nibali 388 J Strength Cond Res 27 2013 10.1519/JSC.0b013e3182576feb 

  23. Strength and conditioning practices of National Hockey League strength and conditioning coaches Ebben 889 J Strength Cond Res 18 2004 

  24. Changes in bar-path kinematics and kinetics after power-clean training Winchester 177 J Strength Cond Res 19 2005 

  25. Short-term effects on lower-body functional power development: weightlifting vs vertical jump training programs Tricoli 433 J Strength Cond Res 19 2005 

  26. Kinematic and kinetic relationships between an Olympic-style lift and the vertical jump Canavan 127 J Strength Cond Res 10 1996 

  27. The hook grip Tsuruda 40 Natl Str Cond Assoc J 11 1989 10.1519/0744-0049(1989)011<0040:THG>2.3.CO;2 

  28. Redistributing load using wearable resistance during power clean training improves athletic performance Marriner 1101 Eur J Sport Sci 17 2017 10.1080/17461391.2017.1360396 

  29. Comparison of the hang high pull and loaded jump squat for the development of vertical jump and isometric force-time characteristics Oranchuk 17 J Strength Cond Res 33 2019 10.1519/JSC.0000000000001941 

  30. Increases in lowerbody strength transfer positively to sprint performance: a systematic review with meta-analysis Seitz 1693 Sports Med 44 2014 10.1007/s40279-014-0227-1 

  31. Ground reaction forces during the power clean Souza 423 J Strength Cond Res 16 2002 

  32. Force-time-curve comparison between weight-lifting derivatives Suchomel 431 Int J Sports Physiol Perform 12 2017 10.1123/ijspp.2016-0147 

  33. Comparing the effectiveness of a short-term vertical jump vs weightlifting program on athletic power development Teo 2741 J Strength Cond Res 30 2016 10.1519/JSC.0000000000001379 

  34. Optimal loading for maximal power output during lower-body resistance exercises Cormie 340 Med Sci Sports Exerc 39 2007 10.1249/01.mss.0000246993.71599.bf 

  35. Optimal loading for peak power output during the hang power clean in professional rugby players Kilduff 260 Int J Sports Physiol Perform 2 2007 10.1123/ijspp.2.3.260 

  36. Kinematic and kinetic relationships between an Olympic-style lift and the vertical jump Canavan 127 J Strength Cond Res 10 1996 

  37. Training strategies to improve muscle power: is Olympic-style weightlifting relevant? Helland 736 Med Sci Sports Exerc 49 2017 10.1249/MSS.0000000000001145 

  38. Does performance of hang power clean differentiate performance of jumping, sprinting, and changing of direction? Hori 412 J Strength Cond Res 22 2008 10.1519/JSC.0b013e318166052b 

  39. Comparing the effectiveness of a short-term vertical jump vs weightlifting program on athletic power development Teo 2741 J Strength Cond Res 30 2016 10.1519/JSC.0000000000001379 

  40. Comparison of the hang high pull and loaded jump squat for the development of vertical jump and isometric force-time characteristics Oranchuk 17 J Strength Cond Res 33 2019 10.1519/JSC.0000000000001941 

  41. Redistributing load using wearable resistance during power clean training improves athletic performance Marriner 1101 Eur J Sport Sci 17 2017 10.1080/17461391.2017.1360396 

  42. Comparison of Olympic vs traditional power lifting training programs in football players Hoffman 129 J Strength Cond Res 18 2004 

  43. Validation of power measurement techniques in dynamic lower body resistance exercises Cormie 103 J Appl Biomech 23 2007 10.1123/jab.23.2.103 

  44. Teaching the first pull Favre 77 Strength Cond J 34 2012 10.1519/SSC.0b013e31826e17dc 

  45. Unique aspects of competitive weightlifting: performance, training and physiology Storey 769 Sports Med 42 2012 10.1007/BF03262294 

  46. The power clean and the power snatch from the knee Suchomel 98 Strength Cond J 38 2016 10.1519/SSC.0000000000000216 

  47. The power clean and the power snatch from the knee Suchomel 98 Strength Cond J 38 2016 10.1519/SSC.0000000000000216 

  48. Mechanical demands of the hang power clean and jump shrug: a joint-level perspective Kipp 466 J Strength Cond Res 32 2018 10.1519/JSC.0000000000001636 

  49. Training strategies to improve muscle power: is Olympic-style weightlifting relevant? Helland 736 Med Sci Sports Exerc 49 2017 10.1249/MSS.0000000000001145 

  50. Increases in lowerbody strength transfer positively to sprint performance: a systematic review with meta-analysis Seitz 1693 Sports Med 44 2014 10.1007/s40279-014-0227-1 

  51. Effect size estimates: current use, calculations, and interpretation Fritz 2 J Exp Psychol Gen 141 2012 10.1037/a0024338 

  52. Mechanical demands of the hang power clean and jump shrug: a joint-level perspective Kipp 466 J Strength Cond Res 32 2018 10.1519/JSC.0000000000001636 

  53. Short-term effects on lower-body functional power development: weightlifting vs vertical jump training programs Tricoli 433 J Strength Cond Res 19 2005 

  54. Adaptations in athletic performance after ballistic power versus strength training Cormie 1582 Med Sci Sports Exerc 42 2010 10.1249/MSS.0b013e3181d2013a 

  55. The high-bar and low-bar back-squats: a biomechanical analysis Glassbrook J Strength Cond Res 

  56. Ground reaction forces during the power clean Souza 423 J Strength Cond Res 16 2002 

  57. Biomechanical changes in the Olympic weightlifting technique of the snatch and clean and jerk from submaximal to maximal loads Häkkinen 57 Scand J Sports Sci 6 1984 

  58. The high-bar and low-bar back-squats: a biomechanical analysis Glassbrook J Strength Cond Res 

  59. Adaptations in athletic performance after ballistic power versus strength training Cormie 1582 Med Sci Sports Exerc 42 2010 10.1249/MSS.0b013e3181d2013a 

  60. Effect of Olympic and traditional resistance training on vertical jump improvement in high school boys Channell 1522 J Strength Cond Res 22 2008 10.1519/JSC.0b013e318181a3d0 

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