Akkurt, S., Gür, H. & Küçükoğlu, S. (1994). Performans test sonuçlarının diürnal görünümü. Spor Hekimliği Dergisi, 31, 93-105.
Bangsbo, J., Michalsik, L. & Petersen, A. (1993). Accumulated 02 deficit during Intense exercise and muscle characteristics of elite athletes. Int J Sports Med, 14, 207-213.
Bernard,T., Giacomoni, M., Gavary, O., Seymat, M. & Falgairette, G. (1998). Time-of day effects in maximal anaerobic leg exercise. Eur J Appl Physiol, 77, 133-138.
Blake, M.J.F. (1967). Relation between circadian variation of body temperature and introversion-extroversion. Nature (London), 215, 896-897.
Cable, T. & Reilly, T. (1987). Influence of circadian rhythms on arm exercise. J Hum Mov Studies, 13, 12-15.
Cohen, C.J. (1980). Human circadian rhythms in heart rate responses to a maximal exercise stres. Ergonomics, 23, 591-595.
Green, S. & Dawson, B. (1993). Measurement of anaerobic capacities in humans. Definitions, limitations and unsolved problems. Sports Med, 15, 3 12-327.
Green, S., Dawson, B.T., Goodman, C. & Carey, M.F. (1996). Anaerobic ATP production and accumulated 02 deficit in cyclists. Med Sci Sports Exerc, 28, 315-321.
Hill, D.W., Cureton, K.J., Collins, M.A. & Grisham, S.C. (1988). Effect of the circadian rhythm in body temperature on oxygen uptake. J Sports Med Phys Fitness, 28, 310-3 12.
Hill, D.W. & Smith, J.C. (1991). Effect of time of day on the relationship between mood state anaerobic power and capacity. Perceptual and Motor Skills, 72, 83-87.
20
Akkurt, Giir, Kuciikoglu
llmarinen, J., Ilmarinen, R., Korhonen, O. & Nurminen, M. (1980). Circadian variation of physiological function related to physical work capacity. Scand J Work Environ Health, 6, 112-122
Medbo, J.I. & Burgers, S. (1990). Effect of training on the anaerobic capacity. Med Sci Sports Ex-erc, 22, 501-507.
Medbo, J.I., Mohn, A.C., Tabata, I., Bahr, R. & Vaage, O. (1988). Anaerobic capacity determined by maximal accumulated oxygen deficit. J Appl Physiol, 64, 50-60.
Medbo, J.I. & Tabata, I. (1989). Relative importance of aerobic and anaerobic energy release during short-lasting exhausting bicycle exercise. J Appl Physiol, 67, 1881-1886.
Medbo, J.I. & Tabata, I. (1993). Anaerobic energy release in working muscle during 30 s to 3 min of exhausting bicycling. J Appl Physiol, 75, 1654-1660.
Melhim, A.F. (1993). Investigation of circadian rhythms in peak power and mean power of female physical education students. Int J Sports Med, 14, 303-306.
Olesen, H.L. (1992). Accumulated oxygen deficit increases with inclination of uphill running. J Appl Physiol, 73, 1130-1134.
Ramsbottom, R., Nevill, A.M., Nevill, M.E., Newport, S. & Williams, C. (1994). Accumulated oxygen deficit and short-distance running performance. J Sports Sci, 12, 447-453.
Reilly, T. (1990).Human circadian rhythms and exercise. Biomedical Engineering, 18, 165-180.
Reilly, T. & Baxter, C. (I983). Influence of time of day on reactions to cycling at a fixed high intensity. Brit J Sports Med, 17, 128-130.
Reilly, T. & Brooks, G.A. (1990). Selective persistence of circadian rhythms in physiological responses to exercise. Cronobiol Internat, 7, 59-67.
Reilly, T. & Down A. (1986). Time of day and performance on all out arm ergometry. In: Reilly T, Wat-kins J & Broms J (Eds), Kinanthropometry ill. (p 296) .London, E and FN Spon.
Reilly, T. & Down, A. (1992). Investigation of circadian rhythms in anaerobic power and capacity of legs. J Sports Med Phys Fitness, 32, 343-347.
Scott, C.B., Roby, F.B., Lohman, T.G. & Bunt, J.C. (1991). The maximally accumulated oxygen deficit as an Indicator of anaerobic capacity. Med Sci Sports Exerc, 23, 618-624.
Trine, MR. & William, PM. (1995). Influence of time of day on psychological responses to exercise: A review. Sports Med, 20, 328-337.
Thank you for copying data from http://www.arastirmax.com