Consequences of prolonged total body immersion in cold water on muscle performance and EMG activity

被引:0
作者
Mathieu Coulange
François Hug
Nathalie Kipson
Claude Robinet
Anne Virginie Desruelle
Bruno Melin
Chantal Jimenez
François Galland
Yves Jammes
机构
[1] Université de la Méditerranée,Laboratoire de Physiopathologie Respiratoire (EA 2201), Institut Jean Roche, Faculté de Médecine
[2] Institut de Médecine Navale du Service de Santé des Armées (IMNSSA),undefined
[3] Centre de Recherches du Service de Santé des Armées Emile Pardé,undefined
来源
Pflügers Archiv | 2006年 / 452卷
关键词
Total body cooling; Maximal voluntary contraction; Isometric contraction; M wave; EMG spectrum;
D O I
暂无
中图分类号
学科分类号
摘要
The consequences of a prolonged total body immersion in cold water on the muscle function have not been documented yet, and they are the object of this French Navy research program. Ten elite divers were totally immerged and stayed immobile during 6 h in cold (18 and 10°C) water. We measured the maximal voluntary leg extension (maximal voluntary contraction, MVC) and evoked compound muscle potential (M wave) in vastus lateralis and soleus muscles at rest, after a submaximal (60% MVC) isometric extension allowing the measurement of the endurance time (Tlim). The power spectrum of surface electromyograms (EMG) was computed during 60% MVCs. MVCs and 60% MVC maneuvers were repeated four times during the immersion. Data were compared with those obtained in a control group studied in dry air condition during a 6-h session. Total body cooling did not affect MVC nor Tlim. The M wave duration increased in the coolest muscle (soleus), but only at 10°C at rest. There were no further fatigue-induced M wave alterations in both muscles. During 60% the MVCs, a time-dependant increase in the leftward shift of the EMG spectrum occurred at the two temperatures. These EMG changes were absent in the control group of subjects studied in dry air. The plasma lactate concentration was elevated throughout the 18 and mostly the 10°C immersion conditions. Throughout the 18°C immersion study, the resting potassium level did not significantly vary, whereas at 10°C, a significant potassium increase occurred soon and persisted throughout the study. Thus, total body immersion in cold water did not affect the global contractile properties of leg muscles during static efforts but elicited significant alterations in electromyographic events which may be related to the variations of interstitial fluid composition.
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页码:91 / 101
页数:10
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