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Moderate muscle cooling induced by single and intermittent/prolonged cold-water immersions differently affects muscle contractile function in young males
Sports Science and Innovation Institute, Lithuanian Sports University, Kaunas, Lithuania.
Sports Science and Innovation Institute, Lithuanian Sports University, Kaunas, Lithuania.
Sports Science and Innovation Institute, Lithuanian Sports University, Kaunas, Lithuania.
Sports Science and Innovation Institute, Lithuanian Sports University, Kaunas, Lithuania.
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2023 (Engelska)Ingår i: Frontiers in Physiology, E-ISSN 1664-042X, Vol. 14, artikel-id 1172817Artikel i tidskrift (Refereegranskat) Published
Abstract [en]

Background: We investigated the impact of moderate muscle cooling induced by single and intermittent/prolonged cold-water immersions (CWI) on muscle force and contractility in unfatigued state and during the development of fatigue resulting from electrically induced contractions.

Methods: Twelve young males participated in this study consisting of two phases [single phase (SP) followed by intermittent/prolonged phase (IPP)], with both phases including two conditions (i.e., four trials in total) performed randomly: control passive sitting (CON) and cold-water immersions (10°C). SP-CWI included one 45 min-bath (from 15 to 60 min). IPP-CWI included three baths (45 min-bath from 15 to 60 min, and 15 min-baths from 165 to 180 min and from 255 to 270 min), with participants sitting at room temperature the rest of the time until 300 min. Blood pressure and intramuscular (Tmu) temperature were assessed, and neuromuscular testing was performed at baseline and 60 min after baseline during SP, and at baseline, 60, 90, 150 and 300 min after baseline during IPP. A fatiguing protocol (100 electrical stimulations) was performed after the last neuromuscular testing of each trial.

Results: In unfatigued state, SP-CWI and IPP-CWI reduced electrically induced torque at 100 Hz (P100) but not at 20 Hz (P20), and increased P20/P100 ratio. The changes from baseline for P100 and P20/P100 ratio were lower in IPP-CWI than SP-CWI. Both cold-water immersion conditions slowed down muscle contraction and relaxation, and reduced maximal isokinetic contraction torque, but the changes from baseline were lower after IPP-CWI than SP-CWI. cold-water immersions did not impair maximal voluntary isometric contraction. During the fatiguing protocol, torque fatigue index and the changes in muscle contractile properties were larger after IPP-CWI than SP-CWI, but were in the same range as after CON conditions. The differences of muscle contractile function between SP-CWI and IPP-CWI were accompanied by a lower reduction of superficial Tmu and a smaller increase in systolic blood pressure after IPP-CWI than SP-CWI.

Conclusion: IPP-CWI induces a less pronounced fast-to-slow contractile transition compared to SP-CWI, and this may result from the reduced vasoconstriction response and enhanced blood perfusion of the superficial muscle vessels, which could ultimately limit the reduction of superficial Tmu.

Ort, förlag, år, upplaga, sidor
Frontiers Media S.A., 2023. Vol. 14, artikel-id 1172817
Nyckelord [en]
cold exposure, cold habituation, cold-water immersion, muscle contractility, muscle fatigue, muscle force, temperature
Nationell ämneskategori
Fysiologi och anatomi
Identifikatorer
URN: urn:nbn:se:oru:diva-105445DOI: 10.3389/fphys.2023.1172817ISI: 000963522200001PubMedID: 37025384Scopus ID: 2-s2.0-85151545832OAI: oai:DiVA.org:oru-105445DiVA, id: diva2:1750850
Anmärkning

Funding agency:

Swedish Research Council for Sports Sciences P2020-0119

Tillgänglig från: 2023-04-14 Skapad: 2023-04-14 Senast uppdaterad: 2025-02-10Bibliografiskt granskad

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Chaillou, Thomas

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