Geurts Carla, Sleivert Gordon G, Cheung Stephen S
Human Performance Laboratory, Faculty of Kinesiology, University of New Brunswick, P.O. Box 4400, Fredericton, N.B., E3B 5A3, Canada.
Eur J Appl Physiol. 2004 Jan;91(1):41-5. doi: 10.1007/s00421-003-0938-8. Epub 2003 Sep 24.
Cooling of a muscle has a detrimental effect on its force, power and contraction velocity, but may improve force control during precision movements by reducing physiological tremor. We investigated if the contractile characteristics of the first dorsal interosseus muscle (FDI) were linked to voluntary force control in warm and hypothermic conditions. Evoked peak twitch force, force at repetitive stimulation of 10 and 20 Hz, and submaximal force control at 25 and 50% maximal voluntary contraction (MVC) of the FDI were measured with cooled [mean (SD); 17.7 (1.3) degrees C] and warm [27.9 (2.3) degrees C] local skin temperatures in six males and four females. With evoked twitches, the time to peak tension was increased after cooling from 161 (38) ms to 219 (34) ms ( P=0.001) and half-relaxation time increased from 94 (24) ms to 157 (46) ms ( P=0.013). Peak force evoked from the repetitive stimulation contraction (10 Hz) increased significantly after cooling from 13.1 (10.2) N to 19.9 (12.1) N ( P=0.026). The coefficient of variation (CV)-representative of the degree of fusion-for evoked repetitive stimulation force (10 Hz) was significantly higher in the warm [3.6 (2.7)%] versus hypothermic condition [2.2 (3.6)%] ( P<0.05). At 25% and 50% MVC, there were no differences in the CV between warm and hypothermic conditions. FDI contractile characteristics change with local cooling, but have little effect upon voluntary submaximal isometric force control. Results are given as mean (SD).
肌肉冷却会对其力量、功率和收缩速度产生不利影响,但可能通过减少生理性震颤来改善精确运动过程中的力量控制。我们研究了在温暖和低温条件下,第一背侧骨间肌(FDI)的收缩特性是否与自愿力量控制相关。在6名男性和4名女性中,测量了局部皮肤温度为冷却状态[平均(标准差);17.7(1.3)摄氏度]和温暖状态[27.9(2.3)摄氏度]时,FDI的诱发峰值抽搐力、10赫兹和20赫兹重复刺激时的力量,以及25%和50%最大自主收缩(MVC)时的次最大力量控制。对于诱发抽搐,冷却后达到峰值张力的时间从161(38)毫秒增加到219(34)毫秒(P = 0.001),半松弛时间从94(24)毫秒增加到157(46)毫秒(P = 0.013)。重复刺激收缩(10赫兹)诱发的峰值力量在冷却后从13.1(10.2)牛显著增加到19.9(12.1)牛(P = 0.026)。对于诱发的重复刺激力量(10赫兹),代表融合程度的变异系数(CV)在温暖状态[3.6(2.7)%]下显著高于低温状态[2.2(3.6)%](P < 0.05)。在25%和50%MVC时,温暖和低温状态下的CV没有差异。FDI的收缩特性随局部冷却而变化,但对自愿次最大等长力量控制影响很小。结果以平均(标准差)表示。