不同强度耐力训练对大鼠骨骼肌毛细血管网络的影响。

Y Kano, S Shimegi, K Masuda, H Sakato, H Ohmori, S Katsuta
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引用次数: 14

摘要

采用形态计量学方法研究了低强度和高强度耐力训练对大鼠足底肌毛细血管管腔直径和数量的影响。将雄性Wistar-Imamichi大鼠分为三组:久坐对照组(Cont, n = 9)、低强度(跑速20 m/min)训练组(T-20, n = 8)和高强度(跑速40 m/min)训练组(T-40, n = 7)。两组大鼠分别进行60分钟/天、5天/周的跑步训练,连续9周。9周后,与对照组相比,T-40组的柠檬酸合成酶活性显著增加,但T-20组没有变化。测定了灌注固定足底肌的毛细血管和肌纤维面积的形态学参数。T-20和T-40的平均肌纤维面积与对照组相似。T-20(2.28 +/- 0.06)和T-40(2.29 +/- 0.06)的毛细血管/纤维比率显著高于对照组(2.00 +/- 0.07)。T-20组小管腔直径(2-4微米)的毛细血管数量明显高于对照组,而T-40组大管腔直径(8-10微米)的毛细血管数量明显高于对照组。本研究表明,耐力训练诱导毛细血管管腔直径和毛细血管数量发生变化,毛细血管管腔直径对耐力训练的适应性反应取决于训练强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of different intensity endurance training on the capillary network in rat skeletal muscle.

Effects of low- and high-intensity endurance training on the capillary luminal diameter and number were studied morphometrically in the rat plantaris muscle. Male Wistar-Imamichi rats were divided into three groups: sedentary control group (Cont, n = 9), low-intensity (running speed of 20 m/min) training group (T-20, n = 8) and high-intensity (running speed of 40 m/min) training group (T-40, n = 7). Rats in both training groups were subjected to each treadmill running program for 60 min/day, 5 days/week for 9 weeks. After 9 weeks of training, citrate synthase activity significantly increased in T-40 compared with Cont, but did not change in T-20. All morphometric parameters with respect to capillary and muscle fiber area were determined in the perfusion-fixed plantaris muscle. The mean muscle fiber areas in both T-20 and T-40 were similar to that in Cont. The capillary-to-fiber ratios were significantly higher in T-20 (2.28 +/- 0.06) and T-40 (2.29 +/- 0.06) than in Cont (2.00 +/- 0.07). The number of capillaries with a small luminal diameter (2-4 microns) was significantly higher in T-20 than in Cont. In contrast, T-40 had a significantly higher number of capillaries with a large luminal diameter (8-10 microns) compared with Cont. This study indicates that endurance training induces changes in the capillary luminal diameter as well as capillary number, and that the adaptive response of the capillary luminal diameter to endurance training depends on the training intensity.

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