Severity of arterial hypoxaemia affects the relative contributions of peripheral muscle fatigue to exercise performance in healthy humans

被引:230
作者
Amann, Markus
Romer, Lee M.
Subudhi, Andrew W.
Pegelow, David F.
Dempsey, Jerome A.
机构
[1] Univ Wisconsin, Sch Med, John Rankin Lab Pulm Med, Med Sci Ctr 4245, Madison, WI 53706 USA
[2] Brunel Univ, Ctr Sports Med & Human Performance, Uxbridge UB8 3PH, Middx, England
[3] Univ Colorado, Hlth Sci Ctr, Altitude Res Ctr, Denver, CO USA
来源
JOURNAL OF PHYSIOLOGY-LONDON | 2007年 / 581卷 / 01期
关键词
D O I
10.1113/jphysiol.2007.129700
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
We examined the effects of hypoxia severity on peripheral versus central determinants of exercise performance. Eight cyclists performed constant-load exercise to exhaustion at various fractions of inspired O-2 fraction (F-IO2 0.21/0.15/0.10). At task failure (pedal frequency < 70% target) arterial hypoxaemia was surreptitiously reversed via acute O-2 supplementation (F-IO2 = 0.30) and subjects were encouraged to continue exercising. Peripheral fatigue was assessed via changes in potentiated quadriceps twitch force (Delta Q(tw,pot)) as measured pre- versus post-exercise in response to supramaximal femoralnerve stimulation. At task failure in normoxia (haemoglobin saturation (S-pO2) similar to 94%, 656 +/- 82 s) and moderate hypoxia (S-pO2 similar to 82%, 278 +/- 16 s), hyperoxygenation had no significant effect on prolonging endurance time. However, following task failure in severe hypoxia (S-pO2, similar to 67%; 125 +/- 6 s), hyperoxygenation elicited a significant prolongation of time to exhaustion (171 6 1 %). The magnitude of A Q(tw,pot) at exhaustion was not different among the three trials (-35% to -36%, P = 0.8). Furthermore, quadriceps integrated EMG, blood lactate, heart rate, and effort perceptions all rose significantly throughout exercise, and to a similar extent at exhaustion following hyperoxygenation at all levels of arterial oxygenation. Since hyperoxygenation prolonged exercise time only in severe hypoxia, we repeated this trial and assessed peripheral fatigue following task failure prior to hyperoxygenation (125 +/- 6 s). Although Q(tw,pot) was reduced from pre-exercise baseline (-23%; P < 0.01), peripheral fatigue was substantially less (P < 0.01) than that observed at task failure in normoxia and moderate hypoxia. We conclude that across the range of normoxia to severe hypoxia, the major determinants of central motor output and exercise performance switches from a predominantly peripheral origin of fatigue to a hypoxia-sensitive central component of fatigue, probably involving brain hypoxic effects on effort perception.
引用
收藏
页码:389 / 403
页数:15
相关论文
共 65 条
[1]   REDUCTION OF STROKE VOLUME DURING EXERCISE IN MAN FOLLOWING ASCENT TO 3100 M ALTITUDE [J].
ALEXANDER, JK ;
HARTLEY, LH ;
MODELSKI, M ;
GROVER, RF .
JOURNAL OF APPLIED PHYSIOLOGY, 1967, 23 (06) :849-+
[2]   Influence of testing protocol on ventilatory thresholds and cycling performance [J].
Amann, M ;
Subudhi, A ;
Foster, C .
MEDICINE AND SCIENCE IN SPORTS AND EXERCISE, 2004, 36 (04) :613-622
[3]   Arterial oxygenation influences central motor output and exercise performance via effects on peripheral locomotor muscle fatigue in humans [J].
Amann, Markus ;
Eldridge, Marlowe W. ;
Lovering, Andrew T. ;
Stickland, Michael K. ;
Pegelow, David F. ;
Dempsey, Jerome A. .
JOURNAL OF PHYSIOLOGY-LONDON, 2006, 575 (03) :937-952
[4]   Effects of arterial oxygen content on peripheral locomotor muscle fatigue [J].
Amann, Markus ;
Romer, Lee M. ;
Pegelow, David F. ;
Jacques, Anthony J. ;
Hess, C. Joel ;
Dempsey, Jerome A. .
JOURNAL OF APPLIED PHYSIOLOGY, 2006, 101 (01) :119-127
[5]  
BIGLANDRITCHIE B, 1988, HYPOXIA FATIGUE ARE
[6]   A role for branched-chain amino acids in reducing central fatigue [J].
Blomstrand, E .
JOURNAL OF NUTRITION, 2006, 136 (02) :544S-547S
[7]   CHANGES IN PLASMA-CONCENTRATIONS OF AROMATIC AND BRANCHED-CHAIN AMINO-ACIDS DURING SUSTAINED EXERCISE IN MAN AND THEIR POSSIBLE ROLE IN FATIGUE [J].
BLOMSTRAND, E ;
CELSING, F ;
NEWSHOLME, EA .
ACTA PHYSIOLOGICA SCANDINAVICA, 1988, 133 (01) :115-121
[8]  
Borg G., 1998, BORGS PERCEIVED EXER, P104
[9]   Parasympathetic neural activity accounts for the lowering of exercise heart rate at high altitude [J].
Boushel, R ;
Calbet, JAL ;
Rådegran, G ;
Sondergaard, H ;
Wagner, PD ;
Saltin, B .
CIRCULATION, 2001, 104 (15) :1785-1791
[10]   Why is Vo2max after altitude acclimatization still reduced despite normalization of arterial O2 content? [J].
Calbet, JAL ;
Boushel, R ;
Rådegran, G ;
Sondergaard, H ;
Wagner, PD ;
Saltin, B .
AMERICAN JOURNAL OF PHYSIOLOGY-REGULATORY INTEGRATIVE AND COMPARATIVE PHYSIOLOGY, 2003, 284 (02) :R304-R316