首页> 美国卫生研究院文献>The Journal of Physiology >Reflex excitability of human soleus motoneurones during voluntary shortening or lengthening contractions.
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Reflex excitability of human soleus motoneurones during voluntary shortening or lengthening contractions.

机译:自发性缩短或延长收缩过程中人类比目鱼运动神经元的反射兴奋性。

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摘要

1. We investigated the possibility that increase or decrease in the monosynaptic reflex excitability of the soleus muscle in man might play a role in matching the muscle mechanical output to the voluntary command aimed at performing isotonic contractions or relaxations, at various velocities. 2. Rectified and integrated electromyographic activity (e.m.g.) and the H reflex of soleus were measured during plantar flexions against a constant load (shortening contractions) or dorsal flexions resisting the load (lengthening contraction), performed without activation of pretibial muscles. 3. At the same ankle joint angle, integrated e.m.g. was larger during shortening contractions than during lengthening contractions. During shortening contractions, integrated e.m.g. increased as a function of the velocity of plantar flexion. During lengthening contractions, integrated e.m.g. decreased as a function of dorsal flexion and angular velocity and nearly disappeared in the last part of the most rapid lengthening contractions. 4. During shortening contractions, the H reflex increased beyond the extent expected for the level of e.m.g. activity; during lengthening contractions, reduction of the H reflex below control values at rest occurred in spite of background e.m.g. activity. 5. When the level of e.m.g. activity was kept constant, the above changes in H reflex were larger in both directions as a function of the velocity of the movement. 6. Passive rotation in the dorsal direction contributed to the inhibition observed during lengthening contractions. 7. It is suggested that these changes in the excitability of the H reflex, probably presynaptic in origin, serve the purpose of appropriately modulating the rate and extent of motoneurone recruitment during shortening and lengthening contractions. This allows the foot to follow a constant-velocity path in spite of the perturbing effects of the spindle afferent inputs and of the muscle characteristics described by the force--length and force--velocity diagrams.
机译:1.我们研究了人类比目鱼肌单突触反射兴奋性的增加或减少可能在使肌肉机械输出与以各种速度进行等张性收缩或松弛的自愿性命令相匹配中的作用。 2.在足底屈肌抵抗恒定负荷(缩短收缩)或背屈抵抗负荷(延长收缩)的过程中,在未激活胫前肌的情况下测量矫正和综合的肌电图活动(例如)和比目鱼肌的H反射。 3.在相同的踝关节角度下,例如在缩短收缩期间比在延长收缩期间更大。在缩短收缩过程中,例如of屈速度的增加。在延长收缩期间,例如随背屈和角速度的下降而减小,而在最迅速延长的收缩的最后部分几乎消失。 4.在缩短收缩期间,H反射增加到超出预期的水平,例如e.m.g。活动;在延长收缩期间,尽管有背景,例如,H反射仍低于静止时的控制值。活动。 5.当e.m.g.保持恒定的活动性,以上两个方向上H反射的变化随运动速度的变化而增大。 6.背侧的被动旋转有助于延长收缩时观察到的抑制作用。 7.建议H反射的兴奋性变化(可能起源于突触)是为了在缩短和延长收缩过程中适当调节运动神经元募集的速率和程度。尽管主轴传入输入具有扰动作用,并且通过力-长度和力-速度图描述了肌肉特征,这仍然允许脚遵循恒定的速度路径。

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