首页> 美国卫生研究院文献>The Journal of Physiology >Reflex responses of gamma motoneurones to vibration of the muscle they innervate.
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Reflex responses of gamma motoneurones to vibration of the muscle they innervate.

机译:γ-运动神经元对神经支配的肌肉振动的反射反应。

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摘要

1. High frequency vibration was applied to the tendon of the non-contracting triceps surae muscle while recording the background discharges of single gamma fibres only small nerve bundles were cut, leaving most of the nerve supply to the triceps intact. 2. 22% out of a total of sixty-three gamma efferents were tonically inhibited by vibration. The inhibition appeared between 25 and 50mum peak-to-peak amplitude of vibration and increased to a plateau for amplitudes of about 100mum. The dependence of the tonic vibration reflex of alpha-efferents on the amplitude of vibration was found to be similar. Increasing the frequency of vibration from 150 to 300 Hz increased the degree of inhibition. 3. 33% of the fusimotor neurones investigated responded to muscle vibration with an increase in discharge rate. The threshold amplitudes of this reflex ranged from 20 to 50mum. Some features of the reflex, in particular the parallel post-vibratory facilitation found in alpha and gamma efferents, pointed to a polysynaptic pathway organized in an alpha-gamma linkage. 4. All gamma efferents inhibited by vibration showed inhibitory responses to antidromic stimulation of the parent ventral root, and most of them were inhibited by ramp stretch of the triceps. The gamma motoneurones facilitated by vibration, however, were excited by muscle stretch and were less susceptible to antidromic inhibition, some lacking it completely. 5. Cutting the nerves to triceps abolished the inhibitory as well as the excitatory responses of gamma efferents to muscle vibration. Both fusimotor reflexes were preserved after spinal section and subsequent administration of L-DOPA. 6. It is concluded that both of the fusimotor reflex effects of vibration are caused by excitation of primary spindle endings within the triceps. The inhibition of fusimotor neurones is thought to be mediated by Renshaw cells activated during vibration. The significance of positive feed-back on to gamma motoneurones as a result of autogenetic facilitation by Ia afferents is discussed in connexion with stability in the stretch reflex loop.
机译:1.高频振动作用于非收缩性肱三头肌肌腱,同时记录单伽马纤维的本底放电,仅切开小神经束,而大部分神经供至肱三头肌。 2.总共有63个伽马传出中有22%被振动抑制。抑制出现在25至50mum的峰峰值振幅之间,并在振幅达到约100mum时增大到平稳状态。发现α-音调的强音振动反射对振动幅度的依赖性是相似的。振动频率从150 Hz增加到300 Hz会增加抑制程度。 3. 33%的融合运动神经元对肌肉振动做出反应,放电速率增加。该反射的阈值幅度范围为20至50μm。反射的某些特征,特别是在α和γ传出中发现的平行的振动后促进,指出了以α-γ键组织的多突触途径。 4.受到振动抑制的所有伽马传出体均对母体腹侧根部的抗蠕动刺激产生抑制反应,并且大多数都被三头肌的斜伸拉伸所抑制。然而,通过振动促进的γ-运动神经元由于肌肉的拉伸而兴奋,并且对抗蠕动抑制作用较不敏感,有些则完全缺乏。 5.切断神经至三头肌消除了伽马传出对肌肉振动的抑制和兴奋反应。脊柱切开和随后给予L-DOPA后,两个融合运动反射均得以保留。 6.结论是,振动的融合运动反射效应都是由三头肌内的主轴末端的激发引起的。认为融合运动神经元的抑制是由振动过程中激活的Renshaw细胞介导的。讨论了Ia传入者自体促成的结果对γ运动神经元的正反馈的重要性,同时还涉及了伸展反射环的稳定性。

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