研究生: |
盧燕鈴 LU Yen-Ling |
---|---|
論文名稱: |
不同振幅振動運動對於衰竭性運動後生理恢復之影響 The effects of the different amplitudes of whole-body vibration on the physiological recovery after exhaustive exercise |
指導教授: |
鄭景峰
Cheng, Ching-Feng |
學位類別: |
碩士 Master |
系所名稱: |
運動競技學系 Department of Athletic Performance |
論文出版年: | 2010 |
畢業學年度: | 98 |
語文別: | 中文 |
論文頁數: | 38 |
中文關鍵詞: | 運動後過攝氧量 、低頻率 、振動 |
英文關鍵詞: | EPOC, low frequency, vibration |
論文種類: | 學術論文 |
相關次數: | 點閱:454 下載:16 |
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目的:探討低頻率 (8 Hz) 不同振幅振動運動 (whole-body vibration, WBV) 對衰竭運動後生理恢復之影響。方法:21名大學男性學生(年齡,20.4±2. 6歲;身高,175.7± 5.8 cm;體重,71.3±6.9 kg)自願參加本重覆量數實驗設計之研究,且須於衰竭性腳踏車運動後,分別接受三種10分鐘的實驗處理,包括無振動運動 (0 Hz, 0 mm, Con) 、高振幅 (8 Hz, 4 mm, HAT) 與低振幅振動運動 (8 Hz, 1 mm, LAT)。所有受試者坐在振動平臺上10分鐘。隨後,所有受試者以仰臥姿安靜休息1小時。在實驗處理與恢復期時,檢測攝氧量 (VO2) 、運動後過攝氧量 (EPOC) 、心跳率 (HR) 與血乳酸 (La)。結果:HR、La以及EPOC在三種不同振幅振動運動處理間,皆未達顯著差異。不過,絕對與相對的攝氧量,在WBV處理時,HAT明顯高於Con與LAT(絕對攝氧量,Con vs. HAT vs. LAT, 0.578 ± 0.075 vs. 0.693 ± 0.132 vs. 0.568 ± 0.068 L/min, p < .05;相對攝氧量,Con vs. HAT vs. LAT, 8.21 ± 1.18 vs. 9.76 ± 1.84 vs. 8.00 ± 0.90 ml/kg/min, p < .05)。結論:不管高或低的振幅,低頻率 (8 Hz) 的全身振動運動均無法改善衰竭性運動後之生理恢復。不過,在衰竭性腳踏車運動後,高振幅振動運動的介入仍會增加能量消耗。
Purpose: This study was to investigate the effects of the different amplitudes of whole-body vibration (WBV) with low frequency (8 Hz) on the physiological recovery from the exhaustive exercise. Methods: Twenty-one college males (age, 20.4 ± 2.6 yrs; height, 175.3 ± 3.5 cm; weight, 71.3 ± 6.9 kg) were voluntarily participated in this repeated measures designed study and were asked to respectively perform three 10-min treatments, non-vibration (0 Hz, 0 mm, Con), high (8 Hz, 4 mm, HAT) and low (8 Hz, 1 mm, LAT) amplitudes of WBV, after incremental exhaustive cycling exercises. During the 10-min treatments, all subjects sat on a chair on the vibration platform, and then were asked to rest in supine position during the 1-h recovery phase. The oxygen consumptions (V ‧O2), excess post-exercise oxygen consumption (EPOC), heart rates (HR) and blood lactate levels (La) were measured during the treatments and recovery phases. Results: There were no significant differences on the HR, La and EPOC among the three treatments. However, the absolute and relative V ‧O2 during the WBV treatment in the HAT were significantly higher than those in the Con and LAT (absolute V ‧O2, Con vs. HAT vs. LAT, 0.578 ± 0.075 vs. 0.693 ± 0.132 vs. 0.568 ± 0.068 L/min, p < .05; relative V ‧O2, Con vs. HAT vs. LAT, 8.21 ± 1.18 vs. 9.76 ± 1.84 vs. 8.00 ± 0.90 ml/kg/min, p < .05). Conclusion: Regardless of the high or low amplitudes, the low frequency whole-body vibration (8Hz) could not improve the physiological recovery from exhaustive exercise. However, the high amplitude WBV still increased the energy expenditures even after the intense cycling exercise.
李小龍(2003)。輔酶Q10對耐力型運動員最大運動能力及乳酸閾值(OBLA)之影響。未出版碩士論文,中國文化大學運動教練研究所,台北市。
李淑玲(2002)。補充含抗氧化劑之碳水化合物飲料對耐力運動期及恢復期生理與生化值之影響。未出版碩士論文,國立體育學院運動科學研究所,桃園縣。
陳人維(2004)。針刺對運動最大攝氧能力及血乳酸影響之研究。未出版碩士論文,國立臺灣體育學院體育研究所,台中市。
陳武山、陸伯珩、李建平、林麗雅、賴榮興(1998)。游泳運動員負荷後放鬆活動強度與血乳酸清除的研究,體育科學,18(5),58-61。
張凱綸(2002)。衰竭運動後補充雞精對於免疫球蛋白和細胞介質的影響。未出版碩士論文,國立體育學院運動科學研究所,桃園縣。
曾思涵(2004)。冰敷、肌肉伸展對跆拳道運動員恢復急性肌肉疲勞之影響。未出版碩士論文,國立體育學院運動傷害防護研究所,桃園縣。
蔡尚智(2005)。不同恢復方式對衰竭運動後生理值的影響。未出版碩士論文,國立臺灣師範大學體育學系在職進修碩士班,台北市。
劉人豪(2002)。冷敷、熱水療、伸展對延遲性肌肉酸痛的影響。未出版碩士論文,國立體育學院教練研究所,桃園縣。
羅欣怡、許美智(2002)。運動訓練對睪固酮及皮質醇之影響。大專體育,60(6),143 -149。
Adams, J. B., Edwards, D., Serviette, D., Bedient, A. M., Huntsman, E., & Jacobs, K. A., et al. (2009). Optimal frequency, displacement, duration, and recovery patterns to maximizepower output following acute whole-body vibration. Journal of Strength and Conditioning Research, 23(1), 237-245.
Bakhtiary, A. H., Farokhi, Z. S., & Far, A. A. (2007). Influence of vibration on delayed onset of muscle soreness following eccentric exercise. British Journal of Sports Medicine, 41, 145-148.
Boileau, R. A., Misner, J. E., Dykstra, G. L., & Spitzer, T. A. (1983). Blood lactate acid removal during treadmill and bicycle exercise at various intensities. The Journal of Sports Medicine and Physical Fitness, 23, 159-167.
Bosco, C., Cardinale, M., & Tsarpela, O. (1999). Influence of vibration on mechanical power and electromyogram activity in human arm flexor muscles. European Journal of Applied Physiology and Occupational Physiology, 79(4), 306-311.
Bosco, C., Iacovelli, M., Tsarpela, O., Cardinale, M., Manno, R., & Tihanti, J., et al. (2000). Hormonal responses to whole body vibrations in man. European Journal of Applied Physiology, 81(6), 449-454.
Cafarelli, E., Sim, J., Carolan, B., & Liebesman, J. (1990). Vibratory massage and short-term recovery from muscular fatigue. International Journal of Sports Medicine, 11, 474-478.
Cochrane, D. J., Stannard, S. R., Sargeant, T., & Rittweger, J. (2008). The rate of muscle temperature increase during acute whole-body vibration exercise. European Journal of Applied Physiology, 103, 441-448.
Cormie, P., Deane, R. S., Tripleet, N. T., & McBride, J. M. (2006). Acute effects of whole-body vibration on muscle activity, strength, and power. Journal of Strength and Conditioning Research, 20(2), 257-261.
Edge, J., Mundel, T., Weir, K., & Cochrane, D. J. (2008). The effects of acute whole body vibration as a recovery modality following high-intensity interval training in well-trained, middle-aged runners. European Journal of Applied Physiology, 105(3), 421-8.
Elia, M., & Livesey, G. (1988). Theory and validity of indirect calorimetry during nrt lipid synthesis. American Journal of Clincal Nutrition, 47(4), 591-607.
Fleck, S. J., & Kraemer, W. J. (1997). Designing resistance training programs (2nd ed.). Champaign, IL: Human Kinetics.
Gollhofer, A., Schopp, A., Rapp, W., & Stroinik, V. (1998). Change in reflex excitability following isometric contraction in human. European Journal of Applied Physiology and Occupational Physiology, 77(1-2), 89-97.
Hagbarth, K. E., & Eklund, G. (1966). Tonic vibration reflexes (TVR) in spasticity. Brain Research, 2, 201-203.
Hazell, T. J., Thomas, G. W., Deguire, J. R., & Lemon, P. W. (2008). Vertical whole-body vibration does not increase cardiovascular stress to static semi-squat exercise. European Journal of Applied Physiology, 104(5), 903-908.
Issurin, V. B., & Tenenbaum, G. (1999). Acute and residual effects of vibratory stimulation on explosive strength in elite and amateur athletes. Journal of Sports Sciences, 17, 177-182.
Kerschan, S. K., Grampp, S., Henk, C., Resch, H., Preisinger, E., Fialka, M. V., & Imhof, M. (2001). Whole-body vibration exercise leads to alterations in muscle blood volume. Clinical Physiology, 21(3), 377-382.
Komi, P. V. (1984). Physiological and biomechanical correlates of muscle function: Effects of muscle structure and stretch-shortening cycle on force and speed. Exercise and Sport Sciences Reviews, 12, 81-121.
LeCheminant, J. D., Jacobsen, D. J., Bailey, B. W., Mayo, M. S., Hill, J. O., Smith, B. K., & Donnelly, J. E. (2008). Effects of long-term aerobic exercise on EPOC. International Journal of Sports Medicine, 29(1), 53-58.
Lohman, E. B., Scott, P. J., Maloney-Hinds, C., Betts-Schwab, H., & Thorpe, D. (2007). The effect of whole body vibration on lower extremity skin blood flow in normal subjects. Medical Science Monitor, 13, 71-76.
Luo, J., McNamara, B., & Moran, K. (2005). The use of vibration training to enhance muscle strength and power. Sports Medicine, 35(1), 23-41.
Maloney-Hinds, C., Petrofsky, J. S., & Zimmerman, G. (2008). The effect of 30 Hz vs. 50 Hz passive vibration and duration of vibration on skin blood flow in the arm. Medical Science Monitor, 14(3), 112-116.
Matthews, P. B. (1966). Reflex activation of the soles muscle of the decerebrate cat by vibration. Nature, 209, 204-205.
McArdle, W. D., Katch, F. I., & Pechar, G. S. (1973). Comparison of continuous and discontinuous treadmill and bicycle test for VO2max. Medicine and Science in Sports and Exercise, 5(3), 156-160.
McConnell, T. R. (1988). Practical considerations in the testing of VO2max in runners. Sports Medicine, 5, 57-68.
Nazarov, V., & Spivak, G. (1987). Development of athlete’s strength abilities by means of biomechanical stimulation method. Journal of Theory and Practice Physical Culture, 12, 37-39.
Patricia, B., Kristina, B., & Patrick, J. (2004). Acute effects of whole body vibration on lower body flexibility and strength. Medicine and Science in Sports and Exercise, 36(5), 350-351.
Powers, S. K., & Howley, E. T. (1997). Exercise physiology: Theory and application to fitness and performance (3rd ed.). Dubuque, IA: Brown & Benchmark Publishers.
Rhea, M. R., Bunker, D., Marin, P. J., & Lunt, K. (2009). Effect of iTonic whole-body vibration on delayed-onset muscle soreness among untrained individuals. Journal of Strength and Conditioning Research, 23(6), 1677-1682.
Rittweger, J., Ehrig, J., Just, K., Mntschelknauss, M., Kirschl, K. A., & Felsenberg, D. (2002). Oxygen uptake in whole body vibration exercise: Influence of frequency, amplitude, and external load. International Journal of Sports Medicine, 23, 428-432.
Rittweger, J., Mutschelknauss, M., & Felsenberg, D. (2003). Acute changes in neuromuscular excitability after exhaustive whole body vibration exercise as compared to exhaustion by squatting exercise. Clinical Physiology and Functional Imaging, 23, 81-86.
Rittweger, J., Schiessl, H., & Felsenberg, D. (2001). Oxygen uptake during whole-body vibration exercise: Comparison with squatting as a slow voluntary movement. European Journal of Applied Physiology, 86(2), 169-73.
Romaiguere, P., Vedel, J. P., & Pagni, S. (1993). Effects of tonic vibration reflex on motorunit recruitment in human wrist extensor muscles. Brain Research, 602, 32-40.
Ross, A., Leveritt, M., & Riek, S. (2001). Neural influences on sprint running. Sports Medicine, 31(6), 409-425.
Sands, W. A., Mcneal, J. R., Stone, M. H., Russell, E. M., & Jemni, M. (2006). Flexibility enhancement with vibration: Acute and long-term. Medicine and Science in Sports and Exercise, 38(4), 720-725.
Sedlock, D. A., Fissinger, J. A., & Melby, C. L. (1989). Effect of exercise intensity and duration on postexercise energy expenditure. Medicine and Science in Sports and Exercise, 21(6), 662-666.
Torvinen, S., Kannus, P., Sievanen, H., Jarvinen, T. A., Pasanen, M., & Kontulainen, S., et al. (2002). Effect of four-month vertical whole body vibration on performance and balance. Medicine and Science in Sports and Exercise, 34(9), 1523-1528.
Verschueren, S. M., Roelants, M., Delecluse, C., Swinnen, S., Vanderschueren, D., & Boonen, S. (2004). Effect of 6-month whole body vibration training on hip density, muscle strength, and postural control in postmenopausal women. Journal of Bone and Mineral Research, 19(3), 352-359.
Weltman, R., & Regan, J. D. (1983). Prion exhaustive exercise and subsequent, maximal constant load exercise performance. International Journal of Sports Medicine, 4, 184-189.