Literature DB >> 29995457

Impact of age on the development of fatigue during large and small muscle mass exercise.

Joshua C Weavil1,2, Thomas J Hureau1, Taylor S Thurston1, Simranjit K Sidhu1, Ryan S Garten1,2, Ashley D Nelson1, Chris J McNeil3, Russell S Richardson1,2, Markus Amann1,2,4.   

Abstract

To examine the impact of aging on neuromuscular fatigue following cycling (CYC; large active muscle mass) and single-leg knee-extension (KE; small active muscle mass) exercise, 8 young (25 ± 4 years) and older (72 ± 6 years) participants performed CYC and KE to task failure at a given relative intensity (80% of peak power output). The young also matched CYC and KE workload and duration of the old (iso-work comparison). Peripheral and central fatigue were quantified via pre-/postexercise decreases in quadriceps twitch torque (∆Qtw, electrical femoral nerve stimulation) and voluntary activation (∆VA). Although young performed 77% and 33% more work during CYC and KE, respectively, time to task failure in both modalities was similar to the old (~9.5 min; P > 0.2). The resulting ΔQtw was also similar between groups (CYC ~40%, KE ~55%; P > 0.3); however, ∆VA was, in both modalities, approximately double in the young (CYC ~6%, KE ~9%; P < 0.05). While causing substantial peripheral and central fatigue in both exercise modalities in the old, ∆Qtw in the iso-work comparison was not significant (CYC; P = 0.2), or ~50% lower (KE; P < 0.05) in the young, with no central fatigue in either modality ( P > 0.4). Based on iso-work comparisons, healthy aging impairs fatigue resistance during aerobic exercise. Furthermore, comparisons of fatigue following exercise at a given relative intensity mask the age-related difference observed following exercise performed at the same workload. Finally, although active muscle mass has little influence on the age-related difference in the rate of fatigue at a given relative intensity, it substantially impacts the comparison during exercise at a given absolute intensity.

Entities:  

Keywords:  aerobic exercise; aging; corticospinal excitability; neuromuscular fatigue

Mesh:

Year:  2018        PMID: 29995457      PMCID: PMC6230894          DOI: 10.1152/ajpregu.00156.2018

Source DB:  PubMed          Journal:  Am J Physiol Regul Integr Comp Physiol        ISSN: 0363-6119            Impact factor:   3.619


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1.  Voluntary strength and fatigue.

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Authors:  J L Taylor; S C Gandevia
Journal:  J Appl Physiol (1985)       Date:  2004-04

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Authors:  C A Harms; M A Babcock; S R McClaran; D F Pegelow; G A Nickele; W B Nelson; J A Dempsey
Journal:  J Appl Physiol (1985)       Date:  1997-05

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7.  Extent of motor unit activation during effort.

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8.  The inhibition of rabbit skeletal muscle contraction by hydrogen ions and phosphate.

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Review 9.  Spinal and supraspinal factors in human muscle fatigue.

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Review 10.  Convective oxygen transport and fatigue.

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