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題名:不同振動刺激頻率與負荷對下肢伸膝肌耐力之影響
書刊名:文化體育學刊
作者:曾自強吳志銘陳嘉遠 引用關係林正常 引用關係
作者(外文):Tseng, Tzu-chiangWu, Chin-minChen, Jia-yeanLin, Jung-charng
出版日期:2016
卷期:22
頁次:頁11-22
主題關鍵詞:下肢訓練振動訓練阻力訓練振動機Lower body trainingVibration trainingResistance trainingVibration trainer
原始連結:連回原系統網址new window
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  • 被引用次數被引用次數:期刊(0) 博士論文(0) 專書(0) 專書論文(0)
  • 排除自我引用排除自我引用:0
  • 共同引用共同引用:7
  • 點閱點閱:9
最近相關文獻指出振動刺激或訓練有助於增進肌力、爆發力,而本研究目的在於探討不同振 動刺激頻率與負荷對下肢伸膝肌耐力之影響。經立意取樣選取大專體育科系學生25 名,採用翔 麟科技公司所研發出的局部振動訓練儀器作為實驗器材,先檢測各受試者下肢伸膝動作的最大自 主性收縮力量(maximum voluntary Isokinetic contraction, MVIC),再以平衡次序法分為不同振動 刺激頻率(10Hz、30Hz)、不同負荷重量(50% MVIC、60% MVIC、70% MVIC) 兩操作介入模 式,探討對下肢伸膝肌耐力之影響。結果發現在總執行負荷量而言,10Hz 刺激介入模式的三負 重分組其統計考驗結果達顯著水準(50% MVIC > 60% MVIC > 70% MVIC)。在反覆次數方面, 振動頻率10Hz、30Hz 組,統計考驗結果皆達顯著水準,10Hz 組事後比較發現50% MVIC > 60% MVIC > 70% MVIC。在60% MVIC 負荷重量時,10Hz 組與30Hz 組的反覆次數統計考驗結 果達顯著水準,事後比較發現30Hz 組大於10Hz 組。在相同振動刺激頻率時,不同的負荷重量 對於下肢伸膝肌耐力有顯著性差異。研究結果發現以30Hz 振動刺激頻率與60% MVIC 負荷重量 組合,較能有效刺激神經反應、活化運動單位。研究結論指出最佳化的振動刺激頻率範圍與負荷 重量操作組合,能有效提升下肢肌耐力的表現,進而提升整體運動表現。
Some previous studies indicated that vibration stimulus or training was an effective way to increase power and strength. Therefore, the purpose of this study was to investigate the effects of different vibration stimulus and load weight combinations on the lower body leg extension endurance. Methods: subjects were 25 college students were recruited to participate in this study. The partial vibration instrument, which developed by Sing Lin technical corporation was used for this study. Maximal Voluntary Isometric Contraction (MVIC) of leg extension test was done prior to the study, and then all subjects divided into two groups, different vibration stimulus (10Hz, 30Hz) and weight load (50% MVIC, 60% MVIC, 70% MVIC) by counter-balance design to evaluate leg extension endurance. Results: Performance in 10Hz group total work test had significant differences that 50% MVIC > 60% MVIC > 70% MVIC, respectively. In repeat counter test, both 10Hz and 30Hz group had shown significant difference, and 50% MVIC > 60% MVIC > 70% MVIC in 10Hz respectively. In further, 30Hz group performed better than 10Hz group within 60% MVIC, different MVIC loading had significant influence on lower body muscular endurance performance within the same vibration frequency, according to the results, the combination of 30Hz vibration frequency and 60% MVIC training has better effects. In conclusion: optimal vibration frequency and loading combination could improve lower body muscular endurance and positive effects on sports performance.
期刊論文
1.Martin, B. J.、Park, H. S.(1997)。Analysis of the tonic vibration reflex: Influence of vibration variables on motor unit synchronization and fatigue。European Journal Applied Physiology,75(6),504-511。  new window
2.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(2),81-86。  new window
3.Humphries, B.、Warman, G.、Purton, J.、Doyle, T.、Dugan, E.(2004)。The influence of vibration on muscle activation and rate of force development during maximal isometric contractions。Journal of Sports Sciences and Medicine,3(1),16-22。  new window
4.Cardinale, M.、Lim, J.(2003)。Electromyography activity of vastus lateralis muscle during whole-body vibrations of different frequencies。The Journal of Strength and Conditioning Research,17(3),621-624。  new window
5.Torvinen, S.、Kannu, P.、Sievanen, H.、Jarvinen, T. A. H.、Pasanen, M.、Kontulainen, S.、Jarvinen, T. L. N.、Jarvinen, M.、Oja, P.、Vuori, I.(2002)。Effect of a vibration exposure on muscular performance and body balance: Randomized cross-over study。Clinical Physiology and Functional Imaging,22(2),145-152。  new window
6.Rittweger, J.、Ehrig, J.、Just, K.、Mutschelknauss, M.、Kirsch, K. A.、Felsenberg, D.(2002)。Oxygen uptake in whole-body vibration exercise: Influence of vibration frequency, amplitude, and external load。International Journal of Sports Medicine,23(6),428-432。  new window
7.Bosco, C.、Colli, R.、Introini, E.、Cardinale, M.、Tsarpela, O.、Madella, A.、Tihanyi, J.、Viru, A.(1999)。Adaptive Responses of human skeletal muscle to vibration exposure。Clinical Physiology,19(2),183-187。  new window
8.Luo, J.、McNamara, B.、Moran, K.(2005)。The use of vibration training to enhance muscle strength and power。Sports Medicine,35(1),23-41。  new window
9.陳偉婷、王志中、李小浦(2007)。振動刺激對肌肉疲勞過程的影響。北京生物醫學工程,26(1),60-64。  延伸查詢new window
10.彭春政、危小焰(2003)。抗負荷力量訓練中附加全身振動刺激對肌力訓練效果的影響。上海體育學院學報,27(1),70-74。  延伸查詢new window
11.蔡崇濱、顏克典(2007)。振動刺激在提升肌力表現的應用。中華體育,21(1),90-97。  延伸查詢new window
12.Rittweger, J.、Beller, G.、Felsenberg, D.(2000)。Acute physiology effects of exhaustive whole-body vibration exercise in man。Clinical Physiology and Functional Imaging,20(2),134-142。  new window
13.Schillings, M. L.(2003)。Relative contribution of central and peripheral factors to fatigue during a maximal sustained effort。European Journal of Applied Physiology,9,562-568。  new window
14.Zimmermann, C. L.、Cook, T. M.(1997)。Effects of vibration frequency and postural changes on human responses to seated whole-body vibration exposure。International Archives of Occupational and Environmental Health,69(3),165-179。  new window
15.Bosco, Carmelo、Cardinale, Marco、Tsarpela, Olga(1999)。Influence of vibration on mechanical power and electromyogram activity in human arm flexor muscles。European Journal of Applied Physiology,79(4),306-311。  new window
16.Delecluse, C.、Roelants, M.、Verschueren, S.(2003)。Strength increase after whole-body vibration compared with resistance training。Medicine & Science in Sports & Exercise,35(6),1033-1041。  new window
17.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(3),177-182。  new window
18.Issurin, V. B.(2005)。Vibrations and their applications in sport。Journal of Sports Medicine and Physical Fitness,45(3),324-336。  new window
19.Komi, P. V.(1986)。Training of strength and power。International Journal of Sport Medicine,7,10-15。  new window
20.Mester, J.、Kleinöder, H.、Yue, Z.(2006)。Vibration training: benefits and risks。Journal of Biomechanics,39(6),1056-1065。  new window
研究報告
1.陳全壽、相子元(1999)。被動反覆衝擊式肌力增強器之研發。  延伸查詢new window
學位論文
1.劉強(2005)。被動反覆等速肌力訓練之神經肌肉適應性(博士論文)。國立體育學院。new window  延伸查詢new window
2.蔡政霖(2008)。不同振幅全身振動刺激對下肢爆發力之影響(碩士論文)。中國文化大學,臺北市。  延伸查詢new window
3.林政東(2004)。漸增與瞬發動作的神經肌肉活動之分析(博士論文)。國立體育學院。new window  延伸查詢new window
4.胡金榮(2006)。振動訓練對青少年短跑選手步頻及速度之影響(碩士論文)。國立體育學院,桃園縣。  延伸查詢new window
5.莊榮仁(2008)。不同項目運動員對全身式振動之響應(博士論文)。國立體育學院,桃園縣。new window  延伸查詢new window
6.Torvinen, S.(2003)。Effect of body vibration on muscular performance, balance, and bone(學士論文)。University of Tampere,Finland。  new window
圖書
1.郭育良、王應然、郭浩然、許昺奇、鄭雅文、蔡朋枝(2004)。職業病概論。臺北市:華杏。  延伸查詢new window
圖書論文
1.Mester, J.、Spitzenpfeil, P.、Yue, Z.(2002)。Vibration Loads: potential for strength and power development。Strength and power in sport。Malden, MA:Blackwell Science。  new window
 
 
 
 
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