Rietbroek Nancy J, Dingboom Elizabeth G, Joosten Brian J L J, Eizema Karin, Everts Maria E
Department of Pathobiology, Faculty of Veterinary Medicine, Utrecht University, 3508 TD Utrecht, The Netherlands.
Am J Vet Res. 2007 Nov;68(11):1232-8. doi: 10.2460/ajvr.68.11.1232.
To investigate whether training for show jumping that is commenced early after birth affects the characteristics of equine locomotory muscle.
19 Dutch Warmblood horses.
Horses were assigned to a trained or not trained (control) group. After weaning, training (free jumping [2 d/wk] that was alternated with a 20-minute period of exercise in a mechanical rotating walker [3 d/wk]) was started and continued until horses were 3 years old. Fiber type composition (determined from myosin heavy chain [MyHC] content), fiber area, diffusion index (area supplied by 1 capillary), citrate synthase activity, and Na(+),K(+)-ATPase content were assessed in gluteus medius muscle specimens collected at 0.5, 1, 2, and 3 years.
Developmental changes included an increase in MyHC fiber type IIa and a decrease in type IIad; increases in fiber area, diffusion index, and citrate synthase activity; and a decrease in Na(+),K(+)-ATPase content. The MyHC fiber type I and type IId were detected in high and low proportions, respectively. Training increased Na(+),K(+)-ATPase content, but did not affect other variables.
In horses, show jumping training at an early age resulted in increased Na(+),K(+)-ATPase content of the deep portions of the gluteus medius muscle. The lack of training effects on the other muscle characteristics can partly be explained by the fact that an appropriate (aerobic) fiber type composition was already established at training commencement. These data also suggested that the developmental changes in equine muscle represent sufficient adaptation to meet the demands of this specific training.
研究出生后早期开始的场地障碍训练是否会影响马的运动肌肉特征。
19匹荷兰温血马。
将马分为训练组或未训练(对照)组。断奶后开始训练(每周2天自由跳跃,与每周3天在机械旋转步行器中进行20分钟的运动交替进行),并持续至马3岁。在0.5、1、2和3岁时采集臀中肌样本,评估纤维类型组成(由肌球蛋白重链[MyHC]含量确定)、纤维面积、扩散指数(1条毛细血管供应的面积)、柠檬酸合酶活性以及Na⁺、K⁺-ATP酶含量。
发育变化包括MyHC IIa型纤维增加和IIad型纤维减少;纤维面积、扩散指数和柠檬酸合酶活性增加;以及Na⁺、K⁺-ATP酶含量减少。MyHC I型和IId型纤维分别以高比例和低比例被检测到。训练增加了Na⁺、K⁺-ATP酶含量,但不影响其他变量。
在马中,早期的场地障碍训练导致臀中肌深部Na⁺、K⁺-ATP酶含量增加。对其他肌肉特征缺乏训练效果,部分原因可能是在训练开始时已经建立了合适的(有氧)纤维类型组成。这些数据还表明,马肌肉的发育变化代表了足以满足这种特定训练需求的适应性。