Polytechnic Institute of Bragança, Bragança, Portugal.
J Appl Physiol (1985). 2012 Jan;112(1):54-63. doi: 10.1152/japplphysiol.00802.2011. Epub 2011 Oct 13.
This study examined the effects of 3 wk of either endurance or strength training on plasticity of the neural mechanisms involved in the soleus H reflex and V wave. Twenty-five sedentary healthy subjects were randomized into an endurance group (n = 13) or strength group (n = 12). Evoked V-wave, H-reflex, and M-wave recruitment curves, maximal voluntary contraction (MVC), and time-to-task-failure (isometric contraction at 40% MVC) of the plantar flexors were recorded before and after training. Following strength training, MVC of the plantar flexors increased by 14.4 ± 5.2% in the strength group (P < 0.001), whereas time-to-task-failure was prolonged in the endurance group (22.7 ± 17.1%; P < 0.05). The V wave-to-maximal M wave (V/M(max)) ratio increased significantly (55.1 ± 28.3%; P < 0.001) following strength training, but the maximal H wave-to-maximal M wave (H(max)/M(max)) ratio remained unchanged. Conversely, in the endurance group the V/M(max) ratio was not altered, whereas the H(max)/M(max) ratio increased by 30.8 ± 21.7% (P < 0.05). The endurance training group also displayed a reduction in the H-reflex excitability threshold while the H-reflex amplitude on the ascending limb of the recruitment curve increased. Strength training only elicited a significant decrease in H-reflex excitability threshold, while H-reflex amplitudes over the ascending limb remained unchanged. These observations indicate that the H-reflex pathway is strongly involved in the enhanced endurance resistance that occurs following endurance training. On the contrary, the improvements in MVC following strength training are likely attributed to increased descending drive and/or modulation in afferents other than Ia afferents.
这项研究考察了 3 周的耐力或力量训练对参与比目鱼肌 H 反射和 V 波的神经机制可塑性的影响。25 名久坐的健康受试者被随机分为耐力组(n=13)或力量组(n=12)。在训练前后记录了 V 波、H 反射和 M 波募集曲线、最大自主收缩(MVC)以及跖屈肌的任务失败时间(40% MVC 的等长收缩)。力量训练后,跖屈肌的 MVC 增加了 14.4±5.2%(P<0.001),而耐力组的任务失败时间延长(22.7±17.1%;P<0.05)。V 波对最大 M 波(V/M(max))比值在力量训练后显著增加(55.1±28.3%;P<0.001),但最大 H 波对最大 M 波(H(max)/M(max))比值保持不变。相反,在耐力组中,V/M(max)比值没有改变,而 H(max)/M(max)比值增加了 30.8±21.7%(P<0.05)。耐力训练组还显示 H 反射兴奋性阈值降低,而募集曲线上升支的 H 反射振幅增加。力量训练仅引起 H 反射兴奋性阈值显著降低,而募集曲线上升支的 H 反射振幅保持不变。这些观察结果表明,H 反射通路强烈参与了耐力训练后增强的耐力抵抗。相反,力量训练后 MVC 的提高可能归因于下降驱动的增加和/或除 Ia 传入以外的传入的调制。