首页> 美国卫生研究院文献>The Journal of Physiology >Effects of fast and slow patterns of tonic long-term stimulation on contractile properties of fast muscle in the cat.
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Effects of fast and slow patterns of tonic long-term stimulation on contractile properties of fast muscle in the cat.

机译:长期进补的快慢模式对猫快肌收缩特性的影响。

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摘要

Different physiological rates of 'tonic' long-term electrical stimulation (rates 5-40 Hz; activity greater than or equal to 50% total time) were delivered to the left-side common peroneal nerve of the cat hind limb. The duration of treatment was 8 weeks, and the animals had previously been subjected to a left-side hemispinalization and dorsal rhizotomy. In the absence of stimulation, these operations had no slowing or weakening effects on peroneal muscle contraction. The minimum two-pulse interval that gave a summation of tension (neuromuscular refractory period) was longer for stimulated than for non-stimulated muscles. Twitches of chronically stimulated muscles had become prolonged by more than 100%. Corresponding changes were found in the tension-frequency relation and in the 'sag'-behaviour of the stimulated muscles. There were no differences between the 'fast' (20 or 40 Hz pulse rates) and the 'slow' (5 or 10 Hz pulse rates) patterns of tonic stimulation with respect to their effects on speed-related muscle properties. Furthermore, during the period of chronic stimulation, the prolongation of twitch contraction time occurred along the same time course for the fast and slow patterns of tonic treatment. All chronically stimulated muscles had become weaker than normal. In comparison to the slow patterns, the present fast patterns of long-term activation caused (1) a smaller amount of decline in maximum muscle force, (2) a smaller twitch: tetanus ratio, and (3) the retention of a normal amount of post-tetanic potentiation of twitch size (decreased by the slow patterns). When tested by a series of 40 Hz bursts, force was better maintained in chronically stimulated muscles than in normal ones. These effects on fatigue resistance were the same for the fast and slow patterns of long-term activation. In peroneus longus muscles contralateral to the side of chronic activation, an evident impairment had commonly occurred in the capability to maintain force during tetani at the high rates needed for a maximum tetanic contraction. The results are discussed in relation to problems concerning the long-term effects of motoneuronal activity patterns on the contractile properties of their muscle units.
机译:对猫后肢的左侧腓总神经传递了不同的生理强度的“强直”长期电刺激(频率5-40 Hz;活动时间大于或等于总时间的50%)。治疗时间为8周,动物此前曾接受过左侧半脊椎固定术和背侧根除术。在没有刺激的情况下,这些手术对腓骨肌肉的收缩没有减慢或减弱的作用。产生刺激总和(神经肌肉不应期)的最小两脉冲间隔比未刺激的肌肉更长。长期刺激肌肉的抽搐时间延长了100%以上。在受拉肌肉的张力频率关系和“下垂”行为中发现了相应的变化。关于对速度相关的肌肉特性的影响,进补刺激的“快”(20或40 Hz脉冲频率)和“慢”(5或10 Hz脉冲频率)模式之间没有差异。此外,在慢性刺激期间,对于快速和缓慢的补品治疗方式,抽搐收缩时间的延长沿相同的时间过程发生。所有慢性刺激的肌肉都变得比正常人虚弱。与缓慢模式相比,目前的长期激活快速模式导致(1)最大肌肉力量下降的幅度较小,(2)抽搐:破伤风比率较小,(3)保持正常量抽搐后的强直性增强(由缓慢的模式降低)。当通过一系列40 Hz的冲击测试时,与正常人相比,在慢性刺激的肌肉中可以更好地保持力量。这些对疲劳强度的影响对于长期激活的快速模式和缓慢模式都是相同的。在慢性激活侧的对侧腓骨长肌中,在破伤风期间以最大破伤风所需的高速率维持力量的能力通常发生了明显的损害。讨论了有关运动神经元活动模式对其肌肉单位收缩特性的长期影响的问题的结果。

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