Literature DB >> 1490214

Training-overtraining: performance, and hormone levels, after a defined increase in training volume versus intensity in experienced middle- and long-distance runners.

M Lehmann1, U Gastmann, K G Petersen, N Bachl, A Seidel, A N Khalaf, S Fischer, J Keul.   

Abstract

Performance and hormones were determined in eight middle- and nine long-distance runners after an increase in training volume (ITV, February 1989) or intensity (ITI, February 1990). Seven runners participated in both studies. The objective was to cause an overtraining syndrome. The mean training volume of 85.9 km week-1 increased within 3 weeks to 176.6 km week-1 during ITV and 96-98% of training volume was performed as long-distance runs at mean(s.d.) 67(8)% of maximum capacity. Speed endurance, high-speed and interval runs averaging 9 km week-1 increased within 3 weeks to 22.7 km during ITI, and the total volume increased from 61.6 to 84.7 km. A plateau in endurance performance and decrease in maximum performance occurred during ITV, probably due to overtraining, with performance incompetence over months. Nocturnal catecholamine excretion decreased markedly (47-53%), contrary to exercise-related plasma catecholamine responses, which increased. Resting and exercise-related cortisol and aldosterone levels decreased. Improvement in endurance and maximum performance occurred during ITI indicating a failure to cause an overtraining syndrome in ITI. Decrease in noctural catecholamine excretion was clearly lower (9-26%), exercise-related catecholamine responses showed a significant decrease, cortisol and aldosterone levels remained almost constant, exercise-related prolactin levels decreased slightly. There were no differences in insulin, C-peptide, free testosterone, somatotropic hormone (STH), follicle stimulating hormone (FSH), luteinizing hormone (LH), thyroid stimulating hormone (TSH), tri-iodothyronine (T3) and thyroxine (T4). The decrease in nocturnal catecholamine excretion during ITV might indicate a decrease in intrinsic sympathetic activity in exhausted sportsmen. But it remains open whether this reflected a central nervous system incompetence.

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Year:  1992        PMID: 1490214      PMCID: PMC1479002          DOI: 10.1136/bjsm.26.4.233

Source DB:  PubMed          Journal:  Br J Sports Med        ISSN: 0306-3674            Impact factor:   13.800


  16 in total

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5.  Plasma cortisol, androstenedione, testosterone and luteinizing hormone in running exercise of different intensities.

Authors:  K Kuoppasalmi; H Näveri; M Härkönen; H Adlercreutz
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Authors:  W W Winder; R C Hickson; J M Hagberg; A A Ehsani; J A McLane
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8.  Capillary-venous differences of free plasma catecholamines at rest and during graded exercise.

Authors:  M Lehmann; J Keul
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10.  Multiple hormonal responses to physical exercise in eumenorrheic trained and untrained women.

Authors:  H A Keizer; H Kuipers; J de Haan; E Beckers; L Habets
Journal:  Int J Sports Med       Date:  1987-12       Impact factor: 3.118

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