Adaptation to Heat and Exercise Performance Under Cooler Conditions: A New Hot Topic

被引:57
作者
Corbett, Jo [1 ]
Neal, Rebecca A. [1 ]
Lunt, Heather C. [1 ]
Tipton, Michael J. [1 ]
机构
[1] Univ Portsmouth, Dept Sport & Exercise Sci, Spinnaker Bldg,Cambridge Rd, Portsmouth PO1 2ER, Hants, England
关键词
HUMAN CARDIOVASCULAR ADJUSTMENTS; MAXIMAL OXYGEN-UPTAKE; AMBIENT-TEMPERATURE; MUSCLE METABOLISM; HUMID ENVIRONMENT; SKIN TEMPERATURE; ACCLIMATION; STRESS; RESPONSES; INDUCTION;
D O I
10.1007/s40279-014-0212-8
中图分类号
G8 [体育];
学科分类号
04 ; 0403 ;
摘要
Chronic exposure to a stressor elicits adaptations enhancing the tolerance to that stressor. These adaptive responses might also improve tolerance under less stressful conditions. For example, historically there has been much interest in the adaptive responses to high-altitude, or hypoxia, and their ergogenic potential under sealevel, or normoxic, conditions. In contrast, the influence of the adaptive responses to heat on exercise under cooler conditions has received relatively little interest. Heat acclimation/acclimatization (HA) is known to increase work capacity in hot environments. Yet, aerobic exercise performance can progressively deteriorate as ambient temperature increases beyond similar to 10 degrees C, indicating a thermal limitation even under relatively cool conditions. The improved thermoregulatory capability induced by HA might attenuate this thermal decrement in a manner similar to that seen when exposed to hotter temperatures. Moreover, the suite of adaptations elicited by HA has the potential to increase maximal oxygen uptake, lactate threshold and economy, and thus may be ergogenic even under conditions where performance is not thermally limited. Indeed, evidence is now emerging to support an ergogenic effect of HA but the number of studies is limited and in some instances lack appropriate control, are confounded by methodological limitations, or do not address the mechanisms of action. Nevertheless, these tantalising insights into the ergogenic potential of heat will likely generate considerable interest in this new 'hot topic'. Future research will need to employ well-designed studies to clarify the exercise conditions under which ergogenic effects of HA are apparent, to elucidate the precise mechanisms, and to optimise HA strategies for performance.
引用
收藏
页码:1323 / 1331
页数:9
相关论文
共 63 条
[1]   THE INDUCTION AND DECAY OF HEAT ACCLIMATIZATION IN TRAINED ATHLETES [J].
ARMSTRONG, LE ;
MARESH, CM .
SPORTS MEDICINE, 1991, 12 (05) :302-312
[2]   Science and cycling: current knowledge and future directions for research [J].
Atkinson, G ;
Davison, R ;
Jeukendrup, A ;
Passfield, L .
JOURNAL OF SPORTS SCIENCES, 2003, 21 (09) :767-787
[3]   Comparing cycling world hour records, 1967-1996: modeling with empirical data [J].
Bassett, DR ;
Kyle, CR ;
Passfield, L ;
Broker, JP ;
Burke, ER .
MEDICINE AND SCIENCE IN SPORTS AND EXERCISE, 1999, 31 (11) :1665-1676
[4]   Sea-Level Exercise Performance Following Adaptation to Hypoxia A Meta-Analysis [J].
Bonetti, Darrell L. ;
Hopkins, Will G. .
SPORTS MEDICINE, 2009, 39 (02) :107-127
[5]  
Buchheit M, 2013, BRIT J SPORT MED, V47, P59
[6]   Physiological and performance adaptations to an in-season soccer camp in the heat: Associations with heart rate and heart rate variability [J].
Buchheit, M. ;
Voss, S. C. ;
Nybo, L. ;
Mohr, M. ;
Racinais, S. .
SCANDINAVIAN JOURNAL OF MEDICINE & SCIENCE IN SPORTS, 2011, 21 (06) :E477-E485
[7]   Heat acclimation improves intermittent sprinting in the heat but additional pre-cooling offers no further ergogenic effect [J].
Castle, Paul ;
Mackenzie, Richard W. ;
Maxwell, Neil ;
Webborn, Anthony D. J. ;
Watt, Peter W. .
JOURNAL OF SPORTS SCIENCES, 2011, 29 (11) :1125-1134
[8]   MAXIMAL OXYGEN-UPTAKE RELATIVE TO PLASMA-VOLUME EXPANSION [J].
COYLE, EF ;
HOPPER, MK ;
COGGAN, AR .
INTERNATIONAL JOURNAL OF SPORTS MEDICINE, 1990, 11 (02) :116-119
[9]   THERMAL REGULATION DURING ACCLIMATIZATION IN A HOT, DRY (DESERT TYPE) ENVIRONMENT [J].
EICHNA, LW ;
PARK, CR ;
NELSON, N ;
HORVATH, SM ;
PALMES, ED .
AMERICAN JOURNAL OF PHYSIOLOGY, 1950, 163 (03) :585-597
[10]   Evidence against a 40°C core temperature threshold for fatigue in humans [J].
Ely, Brett R. ;
Ely, Matthew R. ;
Cheuvront, Samuel N. ;
Kenefick, Robert W. ;
DeGroot, David W. ;
Montain, Scott J. .
JOURNAL OF APPLIED PHYSIOLOGY, 2009, 107 (05) :1519-1525