研究生: |
李旻軒 Li, Min-Xuan |
---|---|
論文名稱: |
等長與等速活化後增能對女子足球選手反覆衝刺與敏捷性之影響 Effects of postactivation potentiation using isometric and isokinetic contractions on repeated sprint and agility performance in female soccer player |
指導教授: |
鄭景峰
Cheng, Ching-Feng |
學位類別: |
碩士 Master |
系所名稱: |
體育學系 Department of Physical Education |
論文出版年: | 2017 |
畢業學年度: | 105 |
語文別: | 中文 |
論文頁數: | 53 |
中文關鍵詞: | 熱身活動 、活化後增能作用 、改變方向 |
英文關鍵詞: | warm-up, postactivation potentiation, change of direction |
DOI URL: | https://doi.org/10.6345/NTNU202203264 |
論文種類: | 學術論文 |
相關次數: | 點閱:145 下載:30 |
分享至: |
查詢本校圖書館目錄 查詢臺灣博碩士論文知識加值系統 勘誤回報 |
目的:探討等長與等速活化後增能 (postactivation potentiation, PAP) 對女子足球選手反覆衝刺 (repeated sprint ability, RSA) 與敏捷性 (repeated change of direction, RCOD) 之影響。方法:本實驗共招募12名女性大專足球運動員為研究對象。以重複量數、平衡次序之實驗設計,讓受試者分別接受三種不同實驗處理,包括控制處理 (CON) 、等長腿部推蹬處理 (isometric leg press, ILP,10組 × 1.5秒,組間休息2分鐘) 及等速腿部推蹬處理 (isokinetic leg press, IKLP,3組 × 5秒,組間休息30秒) ,於實驗處理後進行RSA或RCOD測驗。每項實驗處理間隔至少間隔48小時。測驗過程中記綠每趟衝刺時間,對最快 (fast time, FT) 、平均 (average time, AT) 與總時間 (total time, TT) 進行分析。結果:在RSA測驗方面,FT (CON vs. ILP vs. IKLP,3.49 ± 0.08 vs. 3.49 ± 0.09 vs. 3.48 ± 0.06秒,p > .05) 、AT (CON vs. ILP vs. IKLP,3.56 ± 0.10 vs. 3.57 ± 0.09 vs. 3.58 ± 0.08秒,p > .05) 與TT (CON vs. ILP vs. IKLP,21.40 ± 0.64 vs. 21.44 ± 0.58 vs. 21.50 ± 0.49 秒p > .05),在三種實驗處理之間,皆未達顯著差異 (p > .05) ;在RCOD部分,FT (CON vs. ILP vs. IKLP,5.29 ± 0.22 vs. 5.26 ± 0.18 vs. 5.30 ± 0.21秒,p > .05) 、AT (CON vs. ILP vs. IKLP,5.39 ± 0.20 vs. 5.37 ± 0.16 vs. 5.43 ± 0.19秒,p > .05) 與TT (CON vs. ILP vs. IKLP,32.36 ± 1.23 vs. 32.23 ± 1.00 vs. 32.59 ± 1.19秒,p > .05) ,在三種實驗處理之間,亦未達顯著差異 (p > .05) 。結論:女子足球運動員利用ILP或IKLP進行熱身時,無法提升RSA或RCOD衝刺測驗之運動表現,其下原因可能與過高強度造成疲勞有關。
Purpose: To investigate the acute effects of postactivation potentiation (PAP) induced by isometric and isokinetic contractions on repeated sprint ability (RSA) and repeated change of direction (RCOD) in female soccer players. Methods: Twelve collegiate female soccer players participated into this repeated-measured and counter-balanced designed study. Participants performed three treatments, the control (CON), the isometric leg press (ILP: 10 sets of 1.5 sec, 2-min rest intervals), and the isokinetic leg press treatment (IKLP: 3 sets of 5 sec, 30-sec rest intervals), with 48 hours apart. The RSA and RCOD performances were measured prior to and 5 min after treatments. The fast time (FT), average time (AT) and total time (TT) for each sprint were analysed. Results: No significant effects on FT (CON vs. ILP vs. IKLP, 3.49 ± 0.08 vs. 3.49 ± 0.09 vs. 3.48 ± 0.06 sec, p >.05), AT (CON vs. ILP vs. IKLP, 3.56 ± 0.10 vs. 3.57 ± 0.09 vs. 3.58 ± 0.08 sec, p >.05), and TT (CON vs. ILP vs. IKLP, 21.40 ± 0.64 vs. 21.44 ± 0.58 vs. 21.50 ± 0.49 sec, p > .05) were found among treatments during RSA test. There were also no significant effects on FT (CON vs. ILP vs. IKLP, 5.29 ± 0.22 vs. 5.26 ± 0.18 vs. 5.30 ± 0.21 sec, p >.05), AT (CON vs. ILP vs. IKLP, 5.39 ± 0.20 vs. 5.37 ± 0.16 vs. 5.43 ± 0.19 sec, p >.05), and TT (CON vs. ILP vs. IKLP, 32.36 ± 1.23 vs. 32.23 ± 1.00 vs. 32.59 ± 1.19 sec, p > .05) among treatments during RCOD test. Conclusion: The ILP and IKLP warm-up activities might result in fatigue, thus unchanging the subsequent RSA and RCOD performances in female soccer players.
吳毅 (1999) 。等速肌肉功能測試和訓練技術的基本原理和方法。中國康復醫學雜誌,14(1),44-47。
何寶成、蔡忠昌 (2007) 。熱身運動對於運動表現的影響。大專體育,91,165-173。
林正常 (1993) 。運動科學與訓練。新北市:銀河文化。
林正常 (2005) 。運動生理學。臺北市:師大書苑。
林正常、李佳倫、何仁育、林明儒、周峻忠、林慈芳…劉錦謀 (譯) (2013) 。應用運動生理學—整合理論與實務。新北市:藝軒。 (Kraemer, W. J., Fleck, S. J., & Deschenes, M. R., 2012)
林貴福、朱真儀、張正琪、李佳倫、洪偉欽、蔡忠昌…蔡櫻蘭 (譯) (2010) 。運動生理學。臺北市:禾楓。 (Wilmore, J. H., Costill, D. L., & Kenny, W. L., 2010)
翁士航、俞智赢 (2012) 。透過增強式訓練改善體操基礎動作之探討。中華體育季刊,26(2) ,191-196。
黃婷婷、范利華、高東、夏晴、張敏 (2013) 。等速肌力測試與訓練技術在肌肉功能評定中的研究進展。法醫學雜誌,29,49-52。
邱皓政、林碧芳、許碧純、陳育瑜 (2012) 。統計學:原理與應用。臺北市:五南。
Andersen, H., & Jakobsen, J. (1997). A comparative study of siokinetic dynamonetry and manual mcscle testing of anke dorsal and plantar flexor and knee extensors and flexors. European Neurology, 37(4), 239-242.
Batista, M. A., Roschel, H., Barroso, R., Ugrinowitsch, C., & Tricoli, V. (2011). Influence of strength training background on postactivation potentiation response. Journal of Strength and Conditioning Research, 25(9), 2496-2502.
Batista, M. A., Ugrinowitsch, C., Roschel, H., Lotufo, R., Ricard, M., & Tricoli, V. (2007). Intermittent exercise as a conditioning activity to induce postactivation potentiation. Journal of Strength and Conditioning Research, 21(3), 837-840.
Baudry, S., & Duchateau, J. (2007). Postactivation potentiation in a human muscle: Effect on the rate of torque development of tetanic and voluntary isometric contractions. Journal of Applied Physiology, 102(4), 1394-1401.
Berning, J. M., Adams, K. J., DeBeliso, M., Sevene-Adams, P. G., Harris, C., & Stamford, B. A. (2010). Effect of functional isometric squats on vertical jump in trained and untrained men. Journal of Strength and Conditioning Research, 24(9), 2285-2289.
Bishop, D. (2003). Warm up I: Potential mechanisms and the effect of passive warm up on exercise performance. Sports Medicine, 33(6), 439-454.
Bogdanis, G. C., Tsoukos, A., Veligekas, P., Tsolakis, C., & Terzis, G. (2014). Effects of muscle action type with equal impulse of conditioning activity on postactivation potentiation. Journal of Strength and Conditioning Research, 28(9), 2521-2528.
Buchheit, M., Bishop, D., Haydar, B., Nakamura, F. Y., & Ahmaidi, S. (2010a). Physiological responses to shuttle repeated-sprint running. International Journal of Sports Medicine, 31(6), 402-409.
Buchheit, M., Mendez-Villanueva, A., Delhomel, G., Brughelli, M., & Ahmaidi, S. (2010b). Improving repeated sprint ability in young elite soccer player: Repeated shuttle sprints vs. explosive strength training. Journal of Strength and Conditioning Research, 24(10), 2715-2722.
Chiu, L. Z., Fry, A. C., Weiss, L.W., Schilling, B. K., Brown, L. E., & Smith, S. L. (2003). Postactivation potentiation response in athletic and recreationally trained individuals. Journal of Strength and Conditioning Research, 17(4), 671-677.
Chu, D. A., & Plummer, L. (1984). The language of plyometrics. Strength and Conditioning Journal, 6(5), 30-31.
Dellal, A., Keller, D., Carling, C., Chaouachi, A., Wong, D. P., & Chamari, K. (2010). Physiologic effects of directional changes in intermittent exercise in soccer players. Journal of Strength and Conditioning Research, 24(12), 3219-3226.
Dellal, A., & Wong, D. (2013). Repeated sprint and change of direction abilities in soccer players: Effects of age group. Journal of Strength and Conditioning Research, 27(9), 2504-2508.
DeRenne, C., (2010). Effects of postactivation potentiation warm-up in male and female sport performance: A brief review. Strength and Conditioning Journal, 32(6), 58-64.
Deutsch, M. U., Kearney, G. A., & Rehrer, N. J. (2007). Time-motion analysis of professional rugby union players during match-play. Journal of Sports Sciences, 25(4), 461-472.
Dowson, M. N., Nevill, M. E., Lakomy, H. K., Nevill, A. H., & Hazeldine, R. J. (1998). Modelling the relationship between isokinetic muscle strength and sprint running performance. Journal of Sports Scineces, 16(3), 257-265.
Duchateau, J., & Hainaut, K. (1984). Isometric or dynamic training: Differential effects on mechanical properties of a human muscle. Journal of Applied Physiology: Respiratory, Environmental and Exercise Physiology, 56(2), 296-301.
Duthie, G. M., Young, W. B., & Aitken, D. A. (2002). The acute effects of heavy loads on jump squat performance: An evaluation of the complex and contrast methods of power development. Journal of Strength and Conditioning Research, 16(4), 530-538.
Evetovich, T. K., Conley, D. S., & McCawley, P. F. (2015). Postactivation potentiation enhances upper- and lower-body athletic performance in collegiate male and female athletes. Journal of Strength and Conditioning Research, 29(2), 336-342.
Farrow, D., Young, W., & Bruce, L. (2005). The development of a test of reactive agility for netball: A new methodology. Journal of Sports Science and Medicine, 8(1), 40-48.
Feros, S. A., Young, W. B., Rice, A. J., & Talpey, S. W. (2012). The effect of including a series of isometric conditioning contractions to the rowing warm-up on 1000 m rowing ergometer tme trial performance. Journal of Strength and Conditioning Research, 26(12), 3326-3334.
French, D. N., Kraemer, W. J., & Cooke, C. B. (2003). Changes in dynamic exercise performance following a sequence of preconditioning isometric muscle actions. Journal of Strength and Conditioning Research, 17(4), 678-685.
Fukutani, A., Miyamoto, N., Kanehisa, H., Yanai, T., & Kawakami, Y. (2013). Potentiation of isokinetic torque is velocity-dependent following an isometric conditioning contraction. SpringerPlus, 2(1), 554-564.
Girard, O., Brocherie, F., & Bishop, D. J. (2015). Sprint performance under heat stress: A review. Scandinavian journal of medicine & science in sports, 25(S1), 79-89.
Girard, O., Mendez-Villanueva, A., & Bishop, D. (2011). Repeated-sprint ability-part I factors contributing to fatigue. Sports Medicine, 41(8), 673-694.
Girold, S., Calmels, P., Maurin, D., Milhau, N., & Chatard, J. C. (2006). Assisted and resisted sprint training in swimming. Journal of Strength and Conditioning Research, 20(3), 547-554.
Glaister, M. (2005). Multiple sprint work: Physiological responses, mechanisms of fatigue and the influence of aerobic fitness. Sports Medicine, 35(9), 757-777.
Gossen, E. R., & Sale, D. G. (2000). Effect of postactivation potentiation on dynamic knee extension performance. European Journal of Applied Physiology, 83(6), 524-530.
Gourgoulis, V., Aggeloussis, N., Kasimatis, P., Mavromatis, G., & Garas, A. (2003). Effect of a submaximal half-squats warm-up program on vertical jumping ability. Journal of Strength and Conditioning Research,
17(2), 342-344.
Güllich, A., & Schemidtbleicher, D. (1996). MVC-induced short-term potentiation of explosive force. New Studies in Athletice, 11(2), 67-81.
Haj-Sassi, R., Dardouri, W., Gharbi, Z., Chaouachi, A., Mansour, H., Rabhi, A, & Mahfoudhi, M. E. (2011). Reliability and validity of a new repeated agility test as measure of anaerobic and explosive power. Journal of Strength and Conditioning Research, 25(2), 472-480.
Hamada, T., Sale, D. G., MacDougall, J. D., & Tarnopolsky, M. A. (2000). Postactivation potentiation, fiber type, and twitch contraction time in human knee extensor muscles. Journal of Applied Physiology, 88(6), 2131-2137.
Hislop, H. J., & Perrine, J. J. (1967). The isokinetic concept of exercise. Physical Therapy, 47(2), 114-117.
Hodgson, M., Docherty, D., & Robbins, D. (2005). Post-activation potentiation: Underlying physiology and implications for motor performance. Sports Medicine, 35(7), 585-595.
Kilduff, L. P., Bevan H. R., Kingsley, M. I., Owen, N. J., Bennett, M. A., Bunce, P. J., … Cunningham, D. J. (2007). Postactivation potentiation in professional rugby players: Optimal recovery. Journal of Strength and Conditioning Research, 21(4), 1134-1138.
Kistler, B. M., Walsh, M. S., Horn, T. S., & Cox, R. H. (2010). The acute effects of static stretching on the sprint performance of collegiate men in the 60-and 100-m dash after a dynamic warm-up. Journal of Strength and Conditioning Research, 24(9), 2280-2284.
Komi, P. V. (2000). Stretch-shortening cycle: A powerful model to study normal and fatigued muscle. Journal of Biomechanics, 33(3), 1197-1206.
Linder, E. E., Prins, J. H., Murata, N. M., Derenne, C., Morgan, C. F., & Solomon, J. R. (2010). Effects of preload 4 repetition maximum on 100-m sprint times in collegiate women. Journal of Strength and Conditioning Research, 24(5), 1184-1190.
Lim, J. H., & Kong, P. W. (2013). Effects of isometric and dynamic postactivation potentiation protocols on maximal sprint performance. Journal of Strength and Conditioning Research, 27(10), 2730-2736.
Luscher, H. R., Ruenzel, P., & Henneman, E. (1983). Composite EPSPs in motoneurons of different sizes before and during PTP: Implications for transmission failure and its relief in Ia projection. Journal of Neurophysiology, 49(1), 269-289.
Macintosh, B. R., Robillard, M. E., & Tomaras, E. (2012). Should postactivation potentiation be the goal of your warm-up? Applied Physiology Nutrition, and Metabolism, 37(3), 546-550.
Miyamoto, N., Kanehisa, H., & Kawakami, Y. (2012). Potentiation of maximal voluntary concentric torque in human quadriceps femoris. Medicine and Science in Sports and Exercise, 44(9), 1738-1746.
Moore, R. L., Houston, M. E., Iwamoto, G. A., & Stull, J. T. (1985). Phosphorylation of rabbit skeletal muscle myosin in situ. Journal of Cellular Physiology, 125(2), 301-305.
Moore, R. L., & Stull, J. T. (1984). Myosin light chain phosphorylation in fast and slow skeletal muscles in situ. American Journal of Physiology, 245(5), 462-471.
Okuno, N. M., Tricoli, V., Sliva, S. B., Bertuzzi, R., Moreira, A., & Kiss, M. A. (2013). Postactivation potentiation on repeated-sprint ability in elite handball players. Journal of Strength and Conditioning Research, 27(3), 622-688.
Rahimi, R. (2007). The acute effect of heavy versus light-load squats on sprint performance. Physical Education and Sport, 5(2), 163-169.
Requena, B., Saez-Saez de Villarreal, E., Gapeyeva, H., Ereline, J., Garcia, I., & Paasuke, M. (2011). Relationship between postactivation potentiation of knee extensor muscle, sprinting and vertical jumping performance in professional soccer player. Journal of Strength and Conditioning Research, 25(2), 367-373.
Rixon, K. P., Lamont, H. S., & Bemben, M. G. (2007). Influence of type of muscle contraction, gender, and lifting experience on postactivation potentiation performance. Journal of Strength and Conditioning Research, 21(2), 500-505.
Robbins, D. W. (2005). Postactivation potentiation and its practical applicability : a brief review. Journal of Strength and Conditioning Research, 19(2), 453-458.
Sale, D. G. (2002). Postactivation potentiation: Role in human performance. Exercise and Sport Sciences Reviews, 30(3), 138-143.
Sole, C. J., Moir, G. L., Davis, S. E., & Witmer, C. A. (2013). Mechanical analysis of the acute effects of a heavy resistance exercise warm-up on agility performance in court-sport athletes. Journal of Human Kinetics, 39(12), 147-156.
Spencer, M., Bishop, D., Dawson, B., & Goodman, C. (2005). Physiological and metabolic responses of repeated-sprint activities: Specific to field-based team sports. Sports Medicine, 35(12), 1025-1044.
Stuart, D. S., Lingley, M. D., Grange, R. W., & Houston, M. E. (1988). Myosin light chain phosphorylation and contractile performance of human skeletal muscle. Canadian Journal of Physiology and Pharmacology, 66(1), 49-54.
Szczesna, D. (2003). Regulatory light chains of striated muscle myosin. Structure, function and malfunction. Cardiovascular and Hematological Disorders-Drug Targets, 3(2), 187-197.
Till, K. A., & Cooke, C. (2009). The effects of postativation potentiation on sprint and jump performance of male academy soccer players. Journal of Strength and Conditioning Research, 23(7), 1960-1967.
Tillin, N. A., & Bishop, D. (2009). Factors modulating post-activation potentiation and its effect on performance of subsequent explosive activities. Sports Medicine, 39(2), 147-166.
Wilson, J. M., Duncan, N. M., Marin, P. J., Brown, L. E., Loenneke, J. P., Wilson, S. M. C.,…Ugrinowithsch, C. (2013). Meta-analysis of postactivation potentiation and power: Effects of conditioning activity, volume, gender, rest periods, and training status. Journal of Strength and Conditioning Research, 27(3), 854-859.
Wong, D. P., Chan, G. S., & Smith, A. W. (2012). Repeated-sprint and change of direction abilities in physically active individuals and soccer: Training and test implications. Journal of Strength and Conditioning Research, 26(9), 2324-2330.