Literature DB >> 28006434

Lactate minimum underestimates the maximal lactate steady-state in swimming mice.

Natalia Almeida Rodrigues1, Adriana Souza Torsoni2, Thais Fante2, Ivan Gustavo Masselli Dos Reis1, Claudio Alexandre Gobatto1, Fúlvia Barros Manchado-Gobatto1.   

Abstract

The intensity of lactate minimum (LM) has presented a good estimate of the intensity of maximal lactate steady-state (MLSS); however, this relationship has not yet been verified in the mouse model. We proposed validating the LM protocol for swimming mice by investigating the relationship among intensities of LM and MLSS as well as differences between sexes, in terms of aerobic capacity. Nineteen mice (male: 10, female: 9) were submitted to the evaluation protocols for LM and MLSS. The LM protocol consisted of hyperlactatemia induction (30 s exercise (13% body mass (bm)), 30 s resting pause and exhaustive exercise (13% bm), 9 min resting pause and incremental test). The LM underestimated MLSS (mice: 17.6%; male: 13.5%; female: 21.6%). Pearson's analysis showed a strong correlation among intensities of MLSS and LM (male (r = 0.67, p = 0.033); female (r = 0.86, p = 0.003)), but without agreement between protocols. The Bland-Altman analysis showed that bias was higher for females (1.5 (0.98) % bm; mean (MLSS and LM): 4.4%-6.4% bm) as compared with males (0.84 (1.24) % bm; mean (MLSS and LM): 4.5%-7.5% bm). The error associated with the estimated of intensity for males was lower when compared with the range of means for MLSS and LM. Therefore, the LM test could be used to determine individual aerobic intensity for males (considering the bias) but not females. Furthermore, the females supported higher intensities than the males. The differences in body mass between sexes could not explain the higher intensities supported by the females.

Entities:  

Keywords:  aerobic capacity; anaerobic threshold; blood lactate; capacité aérobie; lactate sanguin; maximal lactate steady state; maximum de lactate en régime stable; seuil anaérobie

Mesh:

Substances:

Year:  2016        PMID: 28006434     DOI: 10.1139/apnm-2016-0198

Source DB:  PubMed          Journal:  Appl Physiol Nutr Metab        ISSN: 1715-5312            Impact factor:   2.665


  8 in total

1.  Mild-cold water swimming does not exacerbate white adipose tissue browning and brown adipose tissue activation in mice.

Authors:  Jhonattan Toniatto da Silva; Paola Sanches Cella; Mayra Tardelli de Jesus Testa; Luiz Augusto Perandini; William T Festuccia; Rafael Deminice; Patricia Chimin
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2.  In vitro Digestion Characteristics of Hydrolyzed Infant Formula and Its Effects on the Growth and Development in Mice.

Authors:  Lifang Feng; Wei Ye; Kuo Zhang; Daofeng Qu; Weilin Liu; Min Wu; Jianzhong Han
Journal:  Front Nutr       Date:  2022-06-24

Review 3.  The Lactate Minimum Test: Concept, Methodological Aspects and Insights for Future Investigations in Human and Animal Models.

Authors:  Leonardo H D Messias; Claudio A Gobatto; Wladimir R Beck; Fúlvia B Manchado-Gobatto
Journal:  Front Physiol       Date:  2017-06-08       Impact factor: 4.566

4.  Peak Velocity as an Alternative Method for Training Prescription in Mice.

Authors:  Caroline de Carvalho Picoli; Paulo Vitor da Silva Romero; Gustavo R Gilio; Débora A Guariglia; Laize P Tófolo; Solange M F de Moraes; Fabiana A Machado; Sidney B Peres
Journal:  Front Physiol       Date:  2018-02-06       Impact factor: 4.566

5.  Profiling the Aerobic Window of Horses in Response to Training by Means of a Modified Lactate Minimum Speed Test: Flatten the Curve.

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7.  Exercise Training under Exposure to Low Levels of Fine Particulate Matter: Effects on Heart Oxidative Stress and Extra-to-Intracellular HSP70 Ratio.

Authors:  Aline Sfalcin Mai; Analu Bender Dos Santos; Lílian Corrêa Costa Beber; Renan Daniel Bueno Basso; Lucas Machado Sulzbacher; Pauline Brendler Goettems-Fiorin; Matias Nunes Frizzo; Claudia Ramos Rhoden; Mirna Stela Ludwig; Thiago Gomes Heck
Journal:  Oxid Med Cell Longev       Date:  2017-12-13       Impact factor: 6.543

8.  Periodized versus non-periodized swimming training with equal total training load: Physiological, molecular and performance adaptations in Wistar rats.

Authors:  Lucas D M Forte; Natália A Rodrigues; André V Cordeiro; Thais de Fante; Laís A P Simino; Adriana S Torsoni; Márcio A Torsoni; Claudio A Gobatto; Fúlvia B Manchado-Gobatto
Journal:  PLoS One       Date:  2020-09-30       Impact factor: 3.240

  8 in total

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