研究生: |
王國慧 |
---|---|
論文名稱: |
跳遠選手膝關節屈伸肌比值之分析 |
指導教授: | 林正常 |
學位類別: |
碩士 Master |
系所名稱: |
體育學系 Department of Physical Education |
論文出版年: | 2005 |
畢業學年度: | 93 |
語文別: | 中文 |
論文頁數: | 60 |
中文關鍵詞: | 跳遠 、等速肌力 、屈/伸肌比值 |
論文種類: | 學術論文 |
相關次數: | 點閱:214 下載:31 |
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摘 要
目的:分析大專與高中跳遠選手膝關節等速向心之屈/伸肌比值、最大力矩以及慣用腳/非慣用腳對秤肌群肌力之差異,並探討最大力矩、屈/伸肌比值與運動表現之相關。方法:以9名大專組 (年齡:21.6±2.6歲、身高:176.2±5.0公分、體重:68.4±5.0公斤、訓練年數:8±2.1年、運動成績:6.95±0.38公尺) 與9名高中組 (年齡:16.9±0.8歲、身高:176.1±4.7公分、體重:69.7±5.6公斤、訓練年數:4.9±1.4年、運動成績:6.40±0.37公尺)跳遠選手為研究對象。所有受試者均進行3次 ( 60˚/s ) 與5次 ( 120˚/s、180˚/s及240˚/s ) 等速向心最大努力收縮之測驗。以獨立樣本t考驗比較大專組與高中組跳遠選手在不同角速度下膝關節肌群肌力比值與最大力矩之差異,再以Pearson's積差相關探討最大力矩、屈/伸肌比值與運動表現之相關。所有顯著水準設為α=.05。結果:本研究發現高中與大專組之最大力矩、屈/伸肌比值及慣用腳/非慣用腳肌力比值無顯著差異 (p>.05)。慣用腳與非慣用腳的伸肌皆大於屈肌,但無顯著差異 (p>.05)。屈/伸肌比值為58.78~101.11%、伸肌/伸肌比值為95.52~105.01%與屈肌/屈肌比值為90.30~99.18%。最大力矩、屈/伸肌比值與運動表現無顯著相關。結論:屈/伸肌比值均符合肌力平衡範圍,慣用腳/非慣用腳肌力比值差異皆相近或低於10%。本研究所得之屈/伸肌比值可提供檢視肌肉不平衡之參考指標,以預防傷害產生。
Abstract
Purpose: The aim of the study was to describe and compare concentric isokinetic knee flexor: extensor ratios (F/E ratios), peak torque (PT) and bilateral strength differences between dominant/non-dominant leg (extensor/extensor ratios, E/E ratios and flexor/flexor ratios, F/F ratios) in college and high school long jumpers and determine the relationships between the PT, F/E ratios and long jump performance. Methods: The jumpers were grouped as college (age: 21.6±2.6 yrs, height: 176.2±5.0 cm, body weight: 68.4±5.0 kg, training age: 8±2.1 yrs, performance: 6.95±0.38 m, n=9) and high school (age: 16.9±0.8 yrs, height: 176.1±4.7 cm, body weight: 69.7±5.6 kg, training age: 4.9±1.4 yrs, performance: 6.40±0.37 m, n=9) long jumpers, volunteered for the present study. All subjects performed maximal knee extension and flexion efforts at 60˚/s, 120˚/s, 180˚/s and 240˚/s of both leg under concentric conditions. Differences in PT, F/E ratio, E/E ratios and F/F ratios, at different velocities were evaluated for college and high school long jumpers using Student t-test. Pearson Product Moment Correlation analyses were conducted to determine the relationships between the PT, F/E ratios and long jump performance. The significance level was set at α=.05. Results: The peak torque (PT), flexor: extensor ratios (F/E ratios) and reciprocal peak torque ratios (E/E ratios and F/F ratios) were not significant between high school and college long jumpers (p>.05). PT of knee extensor was higher than flexor, but not significant (p>.05). The F/E ratios ranged from 58.78 to 101.11%, E/E ratios ranged from 95.52 to 105.01%, F/F ratios ranged from 90.30 to 99.18%. There were no significant relationships between the PT, F/E ratios and long jump performance (p>.05). Conclusions: The findings of the present study indicate that the PT, F/E ratios, E/E ratios and F/F ratios are not influenced by age and training background in the knee of the long jumpers. The ratios provide a guide to observe muscle imbalance which could be a factor in injury.
引用文獻
王琨、魏文儀 (2005)。跳遠起跳肌肉專項能力生物力學研究。體育科學,25(1),42-45。
王顯智(2002)。骨骼肌的收縮型態與特性。中華體育,16(4),14-21。
李水碧(1993)。青少年男田徑選手大腿肌等速肌力分析與比較。國立台灣師範大學體育研究所碩士論文,未出版,臺北市。
李水碧(1996)。等速最大力矩與耐力比的相關研究。臺北師院學報,9,833-854。
李水碧(1996)。屈伸肌群肌力比與腿後肌傷害之探討。中華體育,10(3),122-129。
林正常(1996)。運動生理學實驗指引。台北:師大書苑。
吳昇光(2000)。男性正常年輕人股四頭肌等速向心肌力特性分析。中國醫藥科學雜誌,1(1),53-60。
陳俊忠、吳昇光(1991)。優秀舉重選手膝伸肌與屈機等速肌力之分析。體育學報,13,147-154。
許樹淵(1997)。運動生物力學。臺北:合記。
Aasaard, P., Simonsen, E. B., Magnusson, S. P., Larsson, B., & Dyhre-Poulsen. P. (1998). A new concept for isokinetic hamstring: quadriceps muscle strength ratio. American Journal of Sports Medicine, 26, 231-237.
Alexander, M. J. L. (1990). Peak torque values for antagonist muscle groups and concentric and eccentric contraction types for elite sprinters. Archives of Physical Medicine and Rehabilitation, 71, 334-339.
Baltzopoulos, B. and Brodie, D. A. (1989). Isokinetic dynamometry: applications and limitations. Sports Medicine, 8, 111-116.
Barrata, R., Solomonow, M., & Zhou, B. (1988). The role of antagonistic musculature in maintaining knee stability. The American Journal of Sports Medicine, 16, 113-122.
Bassa, H., Michailidis, H., Kotzamanilis, C., Siatras, T., & Chatzikotoulas, K. (2002). Concentric and eccentric isokinetic knee torque in pre-pubescent male gymnasts. Journal of Human Movement Studies, 42, 213-227.
Blackburn, J. R. and Morrissey, M. (1998). The relationship between open and closed kinetic chain strength of the lower limb and jumping performance. Journal of Orthopedic and Sports Physical Therapy, 27, 430-435.
Brown, L. (2000). Isokinetics in Human Performance. Champaign IL: Human Kinetics.
Burkett, L. S. (1970). Causative factors in hamstring strains. Medicine and Science in Sports and Exercise, 2, 39-42.
Burnie, J. (1987). Factors affecting selected reciprocal muscle group ratio in preadolescents. International Journal of Sports Medicine, 8, 40-45.
Calmels, P., Borne, I. V. D.,Nellen, M., Domenach, M., Minaire, P., Drost, M. (1995). A pilot study of knee isokinetic strength in young, highly trained, female gymnasts. Isokinetic and Exercise Science, 5, 69-74.
Calmels, P. M., Nellen, M., van der Borne, I., Jourdin, P., & Minaire, P. (1997). Concentric and eccentric isokinetic assessment of flexor-extensor torque ratios at hip, knee, and ankle in a sample population of healthy subjects. Archives of Physical Medicine and Rehabilitation, 78, 1224-1230.
Chollet, C. T. & Leroy, D. (2002). Conventional vs. dynamic hamstring-quadriceps strength ratios: A comparison between players and sedentary subjects. Isokinetic and Exercise Science, 10, 183-192.
Colliander, E. B. and Tesch, P. A. (1989). Bilateral eccentric and concentric torque of quadriceps and hamstring muscles in females and males. European Journal of Applied Physiology, 59, 227-232.
Cometti, G., Maffiuletti, N. A., Pousson, M., & Maffulli, N. (2001). Isokinetic strength and anaerobic power of elite, subelite and amateur French soccer players. International Journal of Sports Medicine, 22, 45-51.
Destaso, J., Kaminski, T. W., & Perrin, D. H. (1997). Relationship between drop vertical jump heights and isokinetic measures utilizing the stretch-shortening cycle. Isokinetic and Exercise Science, 6, 175-179.
Ellenbecker, T. S., Roetert, E. P. (1995). Concentric isokinetic quadriceps and hamstring strength in elite junior tennis players. Isokinetic and Exercise Science, 5, 3-6.
Enoka, R. (1988). Neuromuscular Basis of Kinesiology. Champaign IL: Human Kinetics.
Gerodimos, V., Mandou, V., Zafeiridis, A., Ioakimidis, P., Stavropoulos, N., & Kellis, S. (2003). Isokinetic peak torque and hamstring/quadriceps ratios in young basketball player. The Journal of Sports Medicine and Physical Fitness, 43, 444-452.
Gore, C. J. (2000). Physiological Test for Elite Athletes/ Australian Sports Commission. Champaign, IL: Human Kinetics.
Grace, T. G., Sweetser, E. R., & Nelson, M. A. (1984). Isokinetic muscle imbalance and knee-joint injuries: A prospective blind stuy. Journal of Bone Joint Surgery, 66A, 734-740.
Gür, H., Akova, B., Pündük, Z., & Küçüko lu, S. (1999). Effects of age on the reciprocal peak torque ratios during knee muscle contraction in elite soccer players. Scandinavian Journal of Medicine & Science in Sports, 9, 81-87.
Guskiewicz, K., Lephart, S., & Burkholder, R. (1993). The relationship between sprint and speed and hip flexion/extension strength in collegiate athletes. Isokinetic and Exercise Science, 3(2), 111-116.
Hageman, P. A., Gillapsie, D. M., & Hill, L. D. (1988). Effect of speed and limb dominance on eccentric and concentric isokinetic testing of the knee. Journal Orthopaedic and Sports Physical Therapy, 10, 59-65.
Hagood, S., Solomonow, M., Baratta, R., Zhou, B. H., & D’Ambrosia, R. (1990). The effect of joint velocity on the contribution of the antagonist musculature to knee stiffness and laxity. American Journal of Sports Medicine, 18, 182-187.
Hay, J. G., Miller, J. A., & Canterna, R. W. (1986). The techniques of elite long jumpers. Journal of Biomechanics, 19(10), 855-866.
Hay, J. G. and Nohara, H. (1990). Techniques used by elite long jumpers in preparation for takeoff. Journal of Biomechanics, 23(3), 229-239.
Hay, J. G., Thorson, E. M., and Kippenhan, B. C. (1999). Changes in muscle-tendon length during the take-off of a running long jump. Journal of Sports Sciences, 17, 159-172.
Heinrich, K. I., Perrin, D. H., Weltman, A., Giecl, J. H., & Ball, J. (1995). Effect of protocol and assessment device on isokinetic peak torque of the quadriceps muscle group. Isokinetic and Exercise Science, 5, 7-13.
Housh, T. J., Johnson, G. O., Housh, D., Stout, J., Weir, J., Weir, L., & Eckerson, J. (1996). Isokinetic peak torque in young wrestlers. Pediatrics Exercise Science, 8, 143-155.
Jones. M. A. & Stratton, G. (2000). Muscle function assessment in children. Acta Pediatric, 89, 753-761.
Jonhagen, S., Nemeth, G., & Eriksson, E. (1994). Hamstring injuries in sprinters. The role of concentric and eccentric hamstring muscle strength and flexibility. American Journal of Sports Medicine, 22, 262-266.
Kellies, E. and Baltzopoulos, V. (1995). Isokinetic eccentric exercise. Sports Medicine, 19(3), 202-222.
Kellis, E. and Baltzopoulos, V. (1998). Muscle activation differences between eccentric and concentric isokinetic exercise. Medicine and Science in Sports and Exercise, 30(11), 1616-1623.
Knapik, J. J., Bauman, C. L., Jones, B. H., Harris, J. M., & Vaughan, L. (1991). Preseason strength and flexibility imbalance associated with injuries in female collegiate athletes. Medicine and Science in Sports and Exercise, 19, 76-81.
Kramer, J. F., Ingham-Tupper, S., Walters-Stansbury, K., & Stratford, P. (1994). Reliability of absolute and ratio data in assessment of knee extensor and flexor strength. Isokinetic and Exercise Science, 4(2), 51-57.
Magalhaes, J., Oliveira, J., Ascensao, A. & Soares, J. (2004). Concentric quadriceps and hamstrings isokinetic strength in volleyball and soccer player. The Journal of Sports Medicine and Physical Fitness, 44, 119-125.
Malliou, P., Ispirlidis, I., Beneka, A., Taxildaris, K., & Godolias, G. (2003). Vertical jump and knee extensors isokinetic performance in professional soccer players related to the phase of the training period. Isokinetic and Exercise Science, 11, 165-169.
Mameletzi, D. & Siatras, T. H. (2003). Sex differences in isokinetic strength and power of knee muscles in 10-12 year old swimmers. Isokinetic and Exercise Science, 6, 231-237.
Morris, A., Lussier, L., Bell, G., & Dooley, J. (1983). Hamstring/quadriceps strength ratios in collegiate middle-distance and distance runners. The Physician and Sports Medicine, 11(10), 71-77.
Negrete, R. & Brophy, J. (2000). The relationship between isokinetic open and closed chain lower extremity strength and functional performance. Journal of Sports Rehabilitation, 9, 46-61.
Pääsuke, M., Ereline, J., & Gapeyeva, H. (2001). Knee extensor muscle strength and vertical jumping performance characteristics in pre- and post- pubertal boys. Pediatric Exercise Science, 13, 60-69.
Perrin, D. H. (1993). Isokinetic Exercise and Assessment. Champaign IL: Human Kinetics.
Pochlle, M. and Codine, P. (2000). Les tests isocinétiques du genou. Annal de Kinésithérapie, 397, 6-13.
Pontaga, I. (2004). Hip and knee flexors and extensors balance in dependence on the velocity of movement. Biology of Sport, 21, 261-272.
Powers, S. K. & Howley, E. T. (2001). Exercise Physiology: Theory and Application to Fitness and Performance. New York: Mc Graw hill.
Sapega, A. A. (1990). Muscle performance in orthopaedic practice. Journal of Bone and Joint Surgery, 72A, 1562-1574.
Seluyanov, V. (1983). The main mechanism of the takeoff in long jump. Journal of Sports Theory Practice, 6, 23-26.
Seyfarth, A., Friedrichs, A., wank, V., & Blickhan, R. (1999). Dynamics of long jump. Journal of Biomechanics, 32, 1259-1267.
Siatras, T., Mameletzi, D., & Kellis, S. (2004). Knee flexor: extensor isokinetic ratios in young male gymnasts and swimmers. Pediatric Exercise Science, 16, 37-43.
Soderman, K., Alfredson, H., & Pietila, T. (2001). Rick factors for leg injuries in female soccer players: a prospective investigation during one out-door season. Knee Surg Sports Traumatol Arthrosc, 9(3), 13-21.
Stafford, M. G. & Grana, W. A. (1984). Hamstring/quadriceps ratios in college football players: A high velocity evaluation. The American Journal of Sports Medicine, 12(3), 209-211.
Stocker, B. D., Nyland, J., & Caborn, D. N. M (1996). Concentric isokinetic knee torque characteristics of female volleyball athletes. Isokinetic and Exercise Science, 6, 111-114.
Tourney-Chollet, C. and Leroy, D. (2002). Conventional vs. dynamic hamstring-quadriceps strength ratios: A comparison between player and sedentary subjects. Isokinetic and Exercise Science, 10, 183-192.
Tourney-Chollet, C., Leroy, D., Léger, H., & Beuret-Blanquart, F. (2000). Isokinetic knee muscle strength of soccer players according to their position. Isokinetic and Exercise Science, 8, 187-193.
Tsiokanos, A., Kellis, E., Jamurtas, A., & Kellis, S. ( 2002 ). The relationship between jumping performance and isokinetic strength of hip and knee extensors and ankle plantar flexors. Isokinetic and Exercise Science, 10, 107-115.
Walker, J. (1996). Long jump ideas. Track and Field Coaches Review, 95 (4), 28-30.