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Unlabelled: Exercise training results in a speeding of pulmonary oxygen uptake (VO2) kinetics at the onset of exercise in adults; however, only limited research has been conducted with children and adolescents.
Purpose: The aim of the present study was to examine VO2 and muscle deoxygenation kinetics in trained and untrained male adolescents.
Methods: Sixteen trained (15 +/- 0.8 yr, VO2peak = 54.7 +/- 6.2 mL x kg-1 x min-1, self-assessed Tanner stage range 2-4) and nine untrained (15 +/- 0.6 yr, VO2peak = 43.1 +/- 5.2 mL x kg-1 x min-1, Tanner stage range 2-4) male adolescents performed two 6-min exercise transitions from a 3-min baseline of 10 W to a workload equivalent to 80% lactate threshold separated by a minimum of 1 h of passive rest. Oxygen uptake (breath-by-breath) and muscle deoxygenation (deoxyhemoglobin signal from near-infrared spectroscopy) were measured continuously throughout baseline and exercise transition.
Results: The time constant of the fundamental phase of VO2 kinetics was significantly faster in trained versus untrained subjects (trained: 22.3 +/- 7.2 s vs untrained: 29.8 +/- 8.4 s, P = 0.03). In contrast, neither the time constant (trained: 9.7 +/- 2.9 s vs untrained: 10.1 +/- 3.4 s, P = 0.78) nor the mean response time (trained: 17.4 +/- 2.5 s vs untrained: 18.3 +/- 2.3 s, P = 0.39) of muscle deoxygenation kinetics differed with training status.
Conclusions: The present data suggest that exercise training results in faster VO2 kinetics in male adolescents, although inherent capabilities cannot be ruled out. Because muscle deoxygenation kinetics were unchanged, it is likely that faster VO2 kinetics were due to adaptations to both the cardiovascular system and the peripheral musculature.
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http://dx.doi.org/10.1249/MSS.0b013e3181af20d0 | DOI Listing |
J Colloid Interface Sci
December 2024
School of Chemical Engineering, North China University of Science and Technology, Tangshan 063009, China. Electronic address:
Transition metal oxides (TMOs) can accelerate the sluggish kinetics of vanadium redox reaction, but face challenges like limited active sites and difficulties in nanometerization, highlighting the urgent need for new TMO electrocatalysts for vanadium redox flow battery (VRFB). CoMoO features high electrochemical activity, numerous redox sites, flexible control, and short electron pathways. Herein, a high catalytic and super stable graphite felt electrode modified in situ with network cross-linking CoMoO nanosheets (CoMoO@GF) was prepared via hydrothermal and heat treatment method to enhance VRFB performance.
View Article and Find Full Text PDFMed Sci Sports Exerc
December 2024
Exercise Physiology Lab at Toledo, Faculty of Sport Sciences, University of Castilla-La Mancha, Toledo, SPAIN.
Purpose: We investigated if a bout of HIIE is more efficacious at reducing postprandial hyperglycemia than an isocaloric bout of MICE.
Methods: Nineteen healthy physically active individuals (21% women) completed three trials in a randomized order: i) HIIE cycling consisting of 5 bouts of 4 min at 83 ± 9% of subjects' maximal oxygen consumption (V˙O2 MAX) with active recoveries at 53 ± 8% for a total of 50 min; ii) MICE cycling at 65 ± 8% of V˙O2 MAX for 50 min, and iii) CONTROL no exercise. All trials were followed by a standard oral glucose tolerance test (OGTT) ingesting 74 grams of glucose traced with 1 gram of uniformly labeled [13C]-glucose.
ChemSusChem
December 2024
Ningbo Institute of Materials Technology and Engineering CAS, Institute of New Energy Technology, CNITECH, 1219 West Zhongguan Road, Zhenhai District, 315201, Ningbo, CHINA.
Aqueous proton batteries (APBs) have recently demonstrated unprecedented advantages in the fields of ultralow temperature and high-power energy applications due to kinetically favorable proton chemistry. Proton acids (e.g.
View Article and Find Full Text PDFEur J Appl Physiol
December 2024
Faculty of Kinesiology, University of Calgary, Calgary, AB, Canada.
Purpose: This study examined the effect of 3 and 6 weeks of intensity domain-based exercise training on kinetics changes and their relationship with indices of performance.
Methods: Eighty-four young healthy participants (42 M, 42 F) were randomly assigned to six groups (14 participants each, age and sex-matched) consisting of: continuous cycling in the (1) moderate (MOD)-, (2) lower heavy (HVY1)-, and (3) upper heavy-intensity (HVY2)- domain; interval cycling in the (4) severe-intensity domain (i.e.
Eur J Appl Physiol
December 2024
Department of Molecular and Translational Medicine, University of Brescia, Viale Europa 11, 25123, Brescia, Italy.
Purpose: The mechanisms of oxygen uptake ( ) slow component in the severe exercise intensity domain are still a matter of debate. We tested the hypothesis that the rate of blood lactate ([La]) accumulation above maximal lactate steady state (MLSS) is a major cause of slow component.
Methods: On 13 males exercising on a cycle-ergometer, we measured gas exchanges, heart rate, and [La] during maximal incremental exercise test to determine maximal aerobic power ( ) and at constant power exercise tests at 60%, 65%, 70%, and 80% of .
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