Murrant Coral L
Dept. of Human Biology and Nutritional Sciences, University of Guelph, Guelph, Ontario, Canada N1G 2W1.
Am J Physiol Regul Integr Comp Physiol. 2005 Aug;289(2):R505-R513. doi: 10.1152/ajpregu.00571.2004.
To determine the skeletal muscle stimulation parameters that are most important in establishing vasodilation in the microvasculature, I tested whether arteriolar diameter during 2 min of repetitive, short-duration, tetanic skeletal muscle contractions increased with changes in stimulus frequency, stimulation train duration, and contraction frequency. To test this, the diameter of transverse arterioles approximately perpendicular to small bundles of cremaster muscle fibers in situ of anesthetized Golden Syrian hamsters was used as a bioassay system. Arteriolar diameter was measured before and during different stimulation patterns that consisted of a contraction frequency [6, 12, or 24 contractions per minute (cpm)], a stimulation train duration (250, 500, or 750 ms) and a stimulus frequency (4, 8, 10, 15, 20, 30, 40, 60, and 80 Hz). The magnitude of the dilation significantly increased with stimulus frequency but not in a simple linear manner. The average rate of increase was 0.32 +/- 0.02 microm/Hz from 4 to 20 Hz and 0.09 +/- 0.02 microm/Hz from 30 to 80 Hz. The magnitude of the dilation increased significantly with the contraction frequency where the dilation at 6 cpm was significantly smaller than the dilation at 24 cpm across all stimulus frequencies. Changing the train duration from 250 to 750 ms did not significantly affect the magnitude of the dilation. These observations suggest that stimulation parameters are important in determining the magnitude of the microvascular dilation and that the magnitude of the dilation was dependent on both the contraction frequency and stimulus frequency but was independent of train duration.
为了确定在建立微脉管系统血管舒张过程中最重要的骨骼肌刺激参数,我测试了在2分钟重复性、短持续时间的强直性骨骼肌收缩过程中,小动脉直径是否会随着刺激频率、刺激串持续时间和收缩频率的变化而增加。为了测试这一点,将麻醉的金黄地鼠原位中与一小束提睾肌纤维大致垂直的横向小动脉直径用作生物测定系统。在由收缩频率[每分钟6、12或24次收缩(cpm)]、刺激串持续时间(250、500或750毫秒)和刺激频率(4、8、10、15、20、30、40、60和80赫兹)组成的不同刺激模式之前和期间测量小动脉直径。舒张幅度随刺激频率显著增加,但并非呈简单的线性方式。从4赫兹到20赫兹,平均增加速率为0.32±0.02微米/赫兹,从30赫兹到80赫兹为0.09±0.02微米/赫兹。舒张幅度随收缩频率显著增加,在所有刺激频率下,6 cpm时的舒张显著小于24 cpm时的舒张。将刺激串持续时间从250毫秒改为750毫秒对舒张幅度没有显著影响。这些观察结果表明,刺激参数在决定微血管舒张幅度方面很重要,并且舒张幅度取决于收缩频率和刺激频率,但与刺激串持续时间无关。