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題名:最大累積缺氧量(MAOD)是評價無氧運動能力之有效方法
書刊名:中華體育季刊
作者:吳慧君鄭守吉 引用關係
出版日期:1999
卷期:13:2=50
頁次:頁63-71
主題關鍵詞:最大累積缺氧量無氧運動能力
原始連結:連回原系統網址new window
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     無氧運動能力是指人體依賴肌內無氧代謝(ATP-PC和糖酵解)所產生之ATP維 持機體進行最大強度運動的能力。目前,檢測和評量無氧運動能力的方法仍未十分完善,較 廣被研究人員所採用的方法有Margaria-Kalamen(1968)階梯測驗,主要測受試者之ATP-PC 磷化物系統;Wingate(1997)30秒踏車測驗,主要測受試者之ATP-PC及無氧糖酵解系統, 這些方法在評定短期間(10秒)、中時間(20~50秒)無氧運動能力方面確實有一定的價值,但 長時間(60~120秒)無氧運動能力的測驗方法上則尚缺乏。 1984年,Hermansen & Medb ψ首先提出最大累積缺氧量(MAOD)能夠評價人體無氧運 動能力的觀點,而後相繼有一些學者(Medb ψ, 1998; Weyand, 1994; Bangsbo, 1993)也證明了 最大累積缺氧量能獨立於有氧代謝系統而存在;且具有運動項目特徵等,因此,更進一步證 實了最大累積缺氧量是評價人體無氧運動能力的可靠指標。
期刊論文
1.Bangsbo, J.、Michalsic, L.、Petersen, A.(1993)。Accumulated O2 deficit during intense exercise and muscle characteristics of elite athletes。International Journal of Sports Medicine,14(4),207-213。  new window
2.Weyand, P. G.、Cureton, K. J.、Conley, D. S.、Higbie, E. J.(1993)。Peak oxygen deficit during one- and two-legged cycling in men and women。Medicine and Science in Sports and Exercise,25(5),584-591。  new window
3.Nummela, A.、Rusko, H.(1995)。Time course of anaerobic and aerobic energy expenditure during short-term exhaustive running in athletes。International Journal of Sports Medicine,16(8),522-527。  new window
4.Bangsbo, J.、GoUnick, P. D.、Graham, T. E.、Jud, C.、Kiens, B.、Mizuno, M.、Saltin, B.(1990)。Anaerobic energy production and O deficit-debt relationship during exhaustive exercise in human。Journal of Physiology (Lond),422,539-559。  new window
5.Green, S.、Dawson, B. T.、Goodman, C.、Carey, M. F.(1994)。The y-intercept of the maximal work-duration relationship and anaerobic capacity in cyclists。European Journal of Applied Physiology and Occupational Physiology,69,550-556。  new window
6.Green, S.、Dawson, B. T.(1996)。Methodological effects on the VO2-power regression and the accumulated O2 deficit。Medicine and Science in Sports and Exercise,28(3),392-397。  new window
7.Green, S.、Dawson, B. T.、Goodman, C.、Carey, M. F.(1996)。Anaerobic ATP production and accumulated O deficit in cyclists。Medicine and Science in Sports and Exercise,28(3),315-321。  new window
8.Hill, D. W.、Smith, J. C.(1993)。A comparison of methods of estimating anaerobic work capacity。Ergonmics,36(12),1495-1500。  new window
9.Hill, D. W.、Smith, J. C.(1994)。A method to ensure the accuracy of estimates of anaerobic capacity derived using the critical power concept。Journal of Sports Medicine and Physical Fitness,34,23-37。  new window
10.Olesen, H. L.(1992)。Accumulated oxygen deficit increases with inclination of uphill running。Journal of Applied Physiology,73(3),1130-1134。  new window
11.Scott, C. B.、Roby, F. B.、Lohman, T. G.(1991)。The maximally accumulated oxygen deficit as an indicator of anaerobic capacity。Medicine and Science in Sports and Exercise,23(5),618-624。  new window
12.Weyand, P. G.、Cureton, K. J.、Conley, D. S.、Sloniger, M. A.、Liu, Y. L.(1994)。Peak oxygen deficit during one-and two-legged cycling in men and women。Medicine and Science in Sports and Exercise,26(9),1174-1180。  new window
13.Medbø, J. I.、Mohn, A. C.、Tabata, I.、Bahr, R.、Vaage, O.、Sejersted, O. M.(1988)。Anaerobic capacity determined by maximal accumulated O deficit。Journal of Applied Physiology,64(1),50-60。  new window
14.Medbø, J. I.、Tabata, I.(1989)。Relative importance of aerobic and anaerobic energy release during short-lasting exhausting bicycle exercise。Journal of Applied Physiology,67(5),1881-1886。  new window
15.Medbø, J. I.、Burgers, S.(1990)。Effect of training on the anaerobic capacity。Medicine and Science in Sports and Exercise,22(4),501-507。  new window
圖書論文
1.Saltin, B.(1990)。Anaerobic capacity. Past, prospective。Biochemistry of Exercise。champaign, IL:Human kinetics。  new window
 
 
 
 
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