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去大脑猫紧张性牵张反射中的交互抑制

Reciprocal inhibition during the tonic stretch reflex in the decerebrate cat.

作者信息

Fu T C, Hultborn H, Larsson R, Lundberg A

出版信息

J Physiol. 1978 Nov;284:345-69. doi: 10.1113/jphysiol.1978.sp012544.

Abstract
  1. The aim of this study was to investigate post-synaptic reciprocal Ia inhibition during the stretch reflex; particularly the extent to which an increased Ia excitation of the Ia inhibitory interneurones will be counteracted by recurrent inhibition from motor axon collaterals. For this purpose we investigated depression of monosynaptic test reflexes antagonist flexors (reciprocal inhibition) during static stretch of quadriceps or triceps surae in unanaesthetized decerebrate cats. 3. With increasing stretch of the extensor muscle there was first a linear augmentation of reciprocal inhibition, but along with the stretch reflex in the extensor a plateau appeared in the inhibition of the flexors, although the extensor stretch reflex (judged by the e.m.g.) increased with further stretching. Within the range of stretching of triceps surae which gave increased stretch reflexes the plateau in the reciprocal inhibition was usually maintained, while during stretching of quadriceps a second phase of augmenting reciprocal inhibition often appeared. Stretch beyond the level which increased the stretch reflex activity gave augmenting reciprocal inhibition both in case of quadriceps and triceps surae. 3. Excitability measurements from central terminals of Ia afferents revealed that the increasing reciprocal inhibition during increasing stretch reflex activity in quadriceps was associated with a primary afferent depolarization in knee flexor Ia afferents; there was no corresponding effect in ankle flexor Ia afferents during stretch reflexes in triceps surae. 4. The primary afferent depolarization evoked in knee flexor Ia afferents by electrical nerve stimulation was then compared with the presynaptic inhibition of knee flexor monosynaptic test reflexes produced by the same stimuli. The results suggest that the second phase of increasing reciprocal inhibition in knee flexors is due to presynaptic inhibition and accordingly that the depth of post-synaptic reciprocal inhibition remains constant at different degrees of stretch reflex activity in both knee and ankle extensors. 5. It is postulated that during increasing stretch reflex activity the increment in Ia excitation and recurrent inhibitio; on to the Ia inhibitory interneurones almost exactly balance each other. It is suggested that recurrent inhibition of Ia inhibitory interneurones may serve as a segmental autoregulatory mechanism to keep 'alpha-gamma-linked reciprocal inhibition' at a constant depth during different levels of agonist activity.
摘要
  1. 本研究的目的是调查牵张反射过程中突触后交互性Ia抑制;特别是Ia抑制性中间神经元的Ia兴奋性增加在多大程度上会被运动轴突侧支的返回抑制所抵消。为此,我们在未麻醉的去大脑猫的股四头肌或小腿三头肌静态伸展过程中,研究了单突触测试反射拮抗肌屈肌的抑制情况(交互抑制)。3. 随着伸肌伸展程度的增加,交互抑制首先呈线性增强,但随着伸肌的牵张反射,屈肌抑制出现了一个平台期,尽管伸肌牵张反射(通过肌电图判断)随着进一步伸展而增强。在小腿三头肌伸展范围内,牵张反射增强,交互抑制的平台期通常保持不变,而在股四头肌伸展过程中,交互抑制增强的第二阶段经常出现。超过增加牵张反射活动水平的伸展,在股四头肌和小腿三头肌的情况下都产生了增强的交互抑制。3. 对Ia传入神经中枢终末的兴奋性测量表明,股四头肌牵张反射活动增加时交互抑制的增强与膝部屈肌Ia传入神经的初级传入去极化有关;在小腿三头肌牵张反射过程中,踝部屈肌Ia传入神经没有相应的效应。4. 然后将电刺激神经在膝部屈肌Ia传入神经中诱发的初级传入去极化与相同刺激产生的膝部屈肌单突触测试反射的突触前抑制进行比较。结果表明,膝部屈肌交互抑制增强的第二阶段是由于突触前抑制,因此在膝部和踝部伸肌不同程度的牵张反射活动中,突触后交互抑制的深度保持恒定。5. 据推测,在牵张反射活动增加期间,Ia兴奋性的增加和对Ia抑制性中间神经元的返回抑制几乎完全相互平衡。有人认为,对Ia抑制性中间神经元的返回抑制可能作为一种节段性自动调节机制,在不同水平的激动剂活动期间将“α-γ连锁交互抑制”保持在恒定深度。

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