Literature DB >> 21735219

Peripheral markers of central fatigue in trained and untrained during uncompensable heat stress.

Heather E Wright1, Glen A Selkirk, Shawn G Rhind, Tom M McLellan.   

Abstract

The development of fatigue is more pronounced in the heat than thermoneutral environments; however, it is unclear whether biomarkers of central fatigue are consistent with the higher core temperature (T (c)) tolerated by endurance trained (TR) versus untrained (UT) during exertional heat stress (EHS). The purpose of this study was to examine the indicators of central fatigue during EHS in TR versus UT. Twelve TR and 11 UT males (mean ± SE [Formula: see text] = 70 ± 2 and 50 ± 1 mL kg LBM(-1) min(-1), respectively) walked on a treadmill to exhaustion (EXH) in 40°C (dry) wearing protective clothing. Venous blood was obtained at PRE and 0.5°C T (c) increments from 38 to 40°C/EXH. Free tryptophan (f-TRP) decreased dramatically at 39.5°C for the TR. Branch chain amino acids decreased with T (c) and were greater for UT than TR at EXH. Tyrosine and phenylalanine remained unchanged. Serum S100β was undetectable (<5 pg mL(-1)). Albumin was greater for the UT from PRE to 39.0°C and at EXH. Prolactin (PRL) responded to relative thermal strain with similar EXH values despite higher T (c) tolerated for TR (39.7 ± 0.09°C) than UT (39.0 ± 0.09°C). The high EXH PRL values for both groups support its use as a biomarker of the serotonin and dopamine interplay within the brain during the development of central fatigue.

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Year:  2011        PMID: 21735219     DOI: 10.1007/s00421-011-2049-2

Source DB:  PubMed          Journal:  Eur J Appl Physiol        ISSN: 1439-6319            Impact factor:   3.078


  69 in total

1.  Influence of body temperature on the development of fatigue during prolonged exercise in the heat.

Authors:  J González-Alonso; C Teller; S L Andersen; F B Jensen; T Hyldig; B Nielsen
Journal:  J Appl Physiol (1985)       Date:  1999-03

2.  The gross composition of the body.

Authors:  W E SIRI
Journal:  Adv Biol Med Phys       Date:  1956

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Authors:  A St Clair Gibson; T D Noakes
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4.  The prolactin responses to active and passive heating in man.

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6.  Brain and abdominal temperatures at fatigue in rats exercising in the heat.

Authors:  A Fuller; R N Carter; D Mitchell
Journal:  J Appl Physiol (1985)       Date:  1998-03

Review 7.  Amino acids and central fatigue.

Authors:  E Blomstrand
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8.  Hyperprolactinaemia during prolonged exercise in the heat: evidence for a centrally mediated component of fatigue in trained cyclists.

Authors:  Y P Pitsiladis; A T Strachan; I Davidson; R J Maughan
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Authors:  M Kapural; Lj Krizanac-Bengez; G Barnett; J Perl; T Masaryk; D Apollo; P Rasmussen; M R Mayberg; D Janigro
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