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Presynaptic inhibition evoked by muscle contraction.肌肉收缩诱发的突触前抑制。
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2
Presynaptic inhibition of the spinal monosynaptic reflex pathway.脊髓单突触反射通路的突触前抑制
J Physiol. 1962 May;161(2):282-97. doi: 10.1113/jphysiol.1962.sp006886.
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Human motoneuron responses to group 1 volleys blocked presynaptically by vibration.人类运动神经元对经振动突触前阻断的1组群峰电位的反应。
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Comparison of stiffness of soleus and medial gastrocnemius muscles in cats.猫比目鱼肌和腓肠肌内侧肌肉刚度的比较。
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The coactivation of antagonist muscles.拮抗肌的共同激活。
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6
Modulation of reflex EMG and stiffness in response to stretch of human finger muscle.人体手指肌肉受拉伸时反射性肌电图和刚度的调制
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Regulation of soleus muscle stiffness in premammillary cats: intrinsic and reflex components.乳头前猫比目鱼肌僵硬度的调节:内在和反射成分
J Neurophysiol. 1981 Feb;45(2):267-85. doi: 10.1152/jn.1981.45.2.267.
8
Influence of stretch-evoked synaptic potentials on firing probability of cat spinal motoneurones.牵张诱发的突触电位对猫脊髓运动神经元放电概率的影响。
J Physiol. 1984 Feb;347:431-51. doi: 10.1113/jphysiol.1984.sp015074.
9
The effects of single afferent impulses on the probability of firing of external intercostal motoneurones in the cat.单条传入冲动对猫肋间外肌运动神经元放电概率的影响。
J Physiol. 1982 Jan;322:315-36. doi: 10.1113/jphysiol.1982.sp014039.
10
Relationship between EPSP shape and cross-correlation profile explored by computer simulation for studies on human motoneurons.通过计算机模拟探索人类运动神经元研究中兴奋性突触后电位(EPSP)形状与互相关曲线之间的关系。
Exp Brain Res. 1982;47(1):33-40. doi: 10.1007/BF00235883.

人类拮抗肌共同收缩期间突触前抑制的调节。

The regulation of presynaptic inhibition during co-contraction of antagonistic muscles in man.

作者信息

Nielsen J, Kagamihara Y

机构信息

Panum Institute, Copenhagen, Denmark.

出版信息

J Physiol. 1993 May;464:575-93. doi: 10.1113/jphysiol.1993.sp019652.

DOI:10.1113/jphysiol.1993.sp019652
PMID:8229819
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1175403/
Abstract
  1. The size of the soleus, tibialis anterior and medial gastrocnemius H reflexes were measured at different levels of EMG activity in ankle plantar- and dorsiflexors. At similar levels of EMG activity in the agonist muscle, the soleus and tibials anterior H reflexes were found to be smaller during co-contraction than during an isolated agonist contraction. In contrast to this, the medial gastrocnemius H reflex had the same size during co-contraction as during an isolated plantarflexion at comparable EMG levels. 2. Peaks occurred at monosynaptic reflex latency in the post-stimulus time histogram (PSTH) of firing of soleus and tibialis anterior motor units following stimulation of their respective motor nerves. These homonymous Ia peaks were found to be smaller during co-contraction than during isolated agonist contraction, whereas that of medial gastrocnemius motor units was unchanged. As the monosynaptic peak in the PSTH may give an indirect measure of the size of the monosynaptic EPSP in the motoneurone, it is suggested that these findings reflect a differential control of presynaptic inhibition of soleus and tibialis anterior motor units with respect to medial gastrocnemius motor units. 3. The monosynaptic Ia facilitation of the soleus H reflex evoked by a stimulation of the femoral nerve, was also found to be smaller during co-contraction of tibials anterior and soleus than during isolated plantarflexion. This suggests that presynaptic inhibition of heteronymous Ia fibres from the quadriceps muscle projecting to soleus motoneurones is regulated in the same way as presynaptic inhibition of homonymous Ia fibres during co-contraction. 4. The femoral nerve-induced monosynaptic facilitation of the soleus H reflex was found to decrease with increasing tonic levels of both co-contraction and isolated dorsi- and plantarflexion. The amount of facilitation decreased to the same degree with increasing levels of dorsiflexion and co-contraction. For the same level of EMG in the dorsiflexors there was thus no difference in the amount of facilitation whether the dorsiflexors were activated separately or in a co-contraction. 5. Whereas the soleus H reflex increased in size 50 ms prior to the onset of a dynamic plantarflexion, it did not change prior to the onset of a co-contraction. The femoral nerve-induced facilitation increased prior to the plantarflexion, but decreased prior to the co-contraction.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在踝关节跖屈肌和背屈肌不同肌电图(EMG)活动水平下,测量比目鱼肌、胫骨前肌和腓肠肌内侧的H反射大小。在主动肌肌电图活动水平相似时,发现共同收缩时比目鱼肌和胫骨前肌的H反射比单独的主动肌收缩时小。与此相反,在可比的肌电图水平下,腓肠肌内侧的H反射在共同收缩时与单独跖屈时大小相同。2. 在刺激比目鱼肌和胫骨前肌各自的运动神经后,它们运动单位放电的刺激后时间直方图(PSTH)中的单突触反射潜伏期出现峰值。发现这些同名Ia峰值在共同收缩时比单独的主动肌收缩时小,而腓肠肌内侧运动单位的峰值不变。由于PSTH中的单突触峰值可能间接测量运动神经元中单突触兴奋性突触后电位(EPSP)的大小,因此表明这些发现反映了比目鱼肌和胫骨前肌运动单位相对于腓肠肌内侧运动单位在突触前抑制方面的差异控制。3. 还发现,在胫骨前肌和比目鱼肌共同收缩时,由股神经刺激诱发的比目鱼肌H反射的单突触Ia易化作用比单独跖屈时小。这表明,从股四头肌投射到比目鱼肌运动神经元的异名Ia纤维的突触前抑制,在共同收缩时与同名Ia纤维的突触前抑制以相同方式调节。4. 发现股神经诱发的比目鱼肌H反射的单突触易化作用,随着共同收缩以及单独背屈和跖屈的紧张性水平增加而降低。随着背屈和共同收缩水平的增加,易化量以相同程度降低。因此,对于背屈肌相同的肌电图水平,无论背屈肌是单独激活还是共同收缩,易化量没有差异。5. 虽然比目鱼肌H反射在动态跖屈开始前50毫秒时大小增加,但在共同收缩开始前没有变化。股神经诱发的易化作用在跖屈前增加,但在共同收缩前降低。(摘要截选至400字)