Assessment of two methods to determine the relative contributions of the aerobic and anaerobic energy systems in racehorses

被引:13
作者
Bond, Stephanie L. [1 ]
Greco-Otto, Persephone [1 ]
Sides, Raymond [2 ]
Kwong, Grace P. S. [1 ]
Leguilette, Renaud [1 ]
Bayly, Warwick M. [2 ]
机构
[1] Univ Calgary, Dept Vet Clin & Diagnost Serv, Fac Vet Med, Calgary, AB, Canada
[2] Washington State Univ, Coll Vet Med, Dept Vet Clin Sci, Pullman, WA 99164 USA
关键词
energy system contributions; lactate equivalent; maximum accumulated oxygen deficit; (V)over dotO(2max); ACCUMULATED OXYGEN DEFICIT; HIGH-INTENSITY EXERCISE; SKELETAL-MUSCLE; METABOLIC-RESPONSE; CYCLE ERGOMETER; MECHANICAL WORK; FORCE-VELOCITY; LACTIC-ACID; DEBT; ENERGETICS;
D O I
10.1152/japplphysiol.00983.2018
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
A prospective, randomized, controlled study was designed to determine relative aerobic and anaerobic (lactic and alactic) contributions at supramaximal exercise intensities using two different methods. Thoroughbred racehorses (n = 5) performed a maximal rate of oxygen consumption ((V)over dotO(2max)) test and three supramaximal treadmill runs (105, 115, and 125% (V)over dotO(2max)). Blood lactate concentration (BL) was measured at rest, every 15 s during runs, and 2, 5, 10, 20, 30, 40, 50, and 60 min postexercise. In method 1, oxygen demand was calculated for each supramaximal intensity based on the (V)over dotO(2max) test, and relative aerobic and anaerobic contributions were calculated from measured (V)over dotO(2) and the accumulated oxygen deficit. In method 2, aerobic contribution was calculated using the trapezoidal method to determine (V)over dotO(2) during exercise. A monoexponential model was fitted to the postexercise (V)over dotO(2) curve. Alactic contribution was calculated using the coefficients of this model. Lactate anaerobic contribution was calculated by multiplying the peak to resting change in BL by 3. Linear mixed-effects models were used to examine the effects of exercise intensity and method (as fixed effects) on measured outcomes (P <= 0.05). Relative aerobic and anaerobic contributions were not different between methods (P = 0.20). Horses' mean contributions were 81.4. 77.6. and 72.5% (aerobic), and 18.5, 22.3, and 27.4% (anaerobic) at 105, 115. and 125% (V)over dotO(2max). respectively. Individual alactic anaerobic energy was not different between supramaximal exercise intensities (P = 0.43) and was negligible, contributing a mean of 0.11% of the total energy. Relative energy contributions can be calculated using measured (V)over dotO(2) and BL in situations where the exercise intensity is unknown. Understanding relative metabolic demands could help develop tailored training programs. NEW & NOTEWORTHY Relative energy contributions of horses can be calculated using measured (V)over dotO(2) and BL in situations where the exercise intensity is unknown. Horses' mean contributions were 81.4, 77.6, and 72.5% (aerobic), and 18.5, 22.3, and 27.4% (anaerobic) at 105. 115. and 125% of (V)over dotO(2max),( )respectively. Individual alactic capacity was unaltered between supramaximal exercise intensities and accounted for a mean contribution of 0.11% of energy use.
引用
收藏
页码:1390 / 1398
页数:9
相关论文
共 50 条
[21]  
Hermansen L., 1984, PHYSL CHEM TRAINING, P56
[22]   Furosemide reduces accumulated oxygen deficit in horses during brief intense exertion [J].
Hinchcliff, KW ;
McKeever, KH ;
Muir, WW ;
Sams, RA .
JOURNAL OF APPLIED PHYSIOLOGY, 1996, 81 (04) :1550-1554
[23]   High intensity exercise conditioning increases accumulated oxygen deficit of horses [J].
Hinchcliff, KW ;
Lauderdale, MA ;
Dutson, J ;
Geor, RJ ;
Lacombe, VA ;
Taylor, LE .
EQUINE VETERINARY JOURNAL, 2002, 34 (01) :9-16
[24]   BREAKDOWN AND RESYNTHESIS OF PHOSPHORYLCREATINE AND ADENOSINE TRIPHOSPHATE IN CONNECTION WITH MUSCULAR WORK IN MAN [J].
HULTMAN, E ;
BERGSTROM, J ;
ANDERSON, NM .
SCANDINAVIAN JOURNAL OF CLINICAL & LABORATORY INVESTIGATION, 1967, 19 (01) :56-+
[25]   LACTATE AND POTASSIUM FLUXES FROM HUMAN SKELETAL-MUSCLE DURING AND AFTER INTENSE, DYNAMIC, KNEE EXTENSOR EXERCISE [J].
JUEL, C ;
BANGSBO, J ;
GRAHAM, T ;
SALTIN, B .
ACTA PHYSIOLOGICA SCANDINAVICA, 1990, 140 (02) :147-159
[26]  
Lovell D. K., 1987, Equine exercise physiology 2., P312
[27]   MECHANICAL WORK AND EFFICIENCY IN TREADMILL RUNNING AT AEROBIC AND ANAEROBIC THRESHOLDS [J].
LUHTANEN, P ;
RAHKILA, P ;
RUSKO, H ;
VIITASALO, JT .
ACTA PHYSIOLOGICA SCANDINAVICA, 1990, 139 (01) :153-159
[28]   KINETICS AND MECHANISM OF OXYGEN DEBT CONTRACTION IN MAN [J].
MARGARIA, R ;
DIPRAMPERO, PE ;
TORELLI, G ;
MASSARI, C ;
CERRETELLI, P .
JOURNAL OF APPLIED PHYSIOLOGY, 1963, 18 (02) :371-+
[29]   The possible mechanisms of contracting and paying the oxygen debt and the role of lactic acid in muscular contraction [J].
Margaria, R ;
Edwards, HT ;
Dill, DB .
AMERICAN JOURNAL OF PHYSIOLOGY, 1933, 106 (03) :689-715
[30]   MEASUREMENT OF MUSCULAR POWER (ANAEROBIC) IN MAN [J].
MARGARIA, R ;
AGHEMO, P ;
ROVELLI, E .
JOURNAL OF APPLIED PHYSIOLOGY, 1966, 21 (05) :1662-&