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1
Common interneurones in reflex pathways from group 1a and 1b afferents of ankle extensors in the cat.猫踝伸肌1a和1b类传入神经反射通路中的普通中间神经元。
J Physiol. 1981 Jan;310:381-402. doi: 10.1113/jphysiol.1981.sp013556.
2
Common interneurones in reflex pathways from group 1a and 1b afferents of knee flexors and extensors in the cat.猫膝关节屈肌和伸肌的1a类和1b类传入神经反射通路中的共同中间神经元。
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3
An interneuronal relay for group I and II muscle afferents in the midlumbar segments of the cat spinal cord.猫脊髓腰段中部I类和II类肌传入神经的中间神经元中继。
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4
Inhibitory interactions between interneurones in reflex pathways from group Ia and group Ib afferents in the cat.猫中来自Ia类和Ib类传入神经的反射通路中中间神经元之间的抑制性相互作用。
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5
Lamina VIII interneurones interposed in crossed reflex pathways in the cat.猫中位于交叉反射通路中的第VIII层中间神经元。
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6
Oligosynaptic excitation of motoneurones by impulses in group Ia muscle spindle afferents in the cat.猫的Ia类肌梭传入冲动对运动神经元的多突触兴奋作用。
J Physiol. 1981 Jul;316:411-25. doi: 10.1113/jphysiol.1981.sp013797.
7
Autogenetic inhibition of motoneurones by impulses in group Ia muscle spindle afferents.Ia类肌梭传入纤维冲动对运动神经元的自生抑制
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8
Reflex pathways from group II muscle afferents. 2. Functional characteristics of reflex pathways to alpha-motoneurones.来自II类肌传入纤维的反射通路。2. 至α运动神经元的反射通路的功能特征。
Exp Brain Res. 1987;65(2):282-93. doi: 10.1007/BF00236300.
9
Pattern of 'non-reciprocal' inhibition of motoneurones by impulses in group Ia muscle spindle afferents in the cat.猫的Ia类肌梭传入冲动对运动神经元的“非相互性”抑制模式。
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10
Sensory input to cells of origin of uncrossed spinocerebellar tract located below Clarke's column in the cat.对猫中位于克拉克柱下方的同侧脊髓小脑束起始细胞的感觉输入。
J Physiol. 1988 Apr;398:233-57. doi: 10.1113/jphysiol.1988.sp017040.

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The phase difference between neural drives to antagonist muscles in essential tremor is associated with the relative strength of supraspinal and afferent input.特发性震颤中拮抗肌神经驱动之间的相位差与脊髓上和传入输入的相对强度有关。
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Spinal circuits can accommodate interaction torques during multijoint limb movements.脊柱回路可以适应多关节肢体运动中的相互作用扭矩。
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本文引用的文献

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Nature and significance of the reflex connections established by large afferent fibers of muscular origin.肌肉来源的大传入纤维建立的反射联系的性质和意义。
Am J Physiol. 1952 Jun;169(3):609-21. doi: 10.1152/ajplegacy.1952.169.3.609.
2
The motor cell columns of the lumbo-sacral spinal cord of the cat.猫腰骶脊髓的运动细胞柱。
J Comp Neurol. 1951 Apr;94(2):313-63. doi: 10.1002/cne.900940209.
3
Selective adequate activation of large afferents from muscle spindles and Golgi tendon organs.选择性充分激活来自肌梭和高尔基腱器官的大传入纤维。
Acta Physiol Scand. 1960 Jul 15;49:155-64. doi: 10.1111/j.1748-1716.1960.tb01939.x.
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Effects from the pyramidal tract on spinal reflex arcs.锥体束对脊髓反射弧的影响。
Acta Physiol Scand. 1962 Nov-Dec;56:201-19. doi: 10.1111/j.1748-1716.1962.tb02498.x.
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Intracellular recording from cells of the ventral spinocerebellar tract.从腹侧脊髓小脑束细胞进行细胞内记录。
J Physiol. 1961 Oct;158(3):486-516. doi: 10.1113/jphysiol.1961.sp006782.
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Types of neurone in and around the intermediate nucleus of the lumbosacral cord.腰骶髓中间核及其周围的神经元类型。
J Physiol. 1960 Nov;154(1):89-114. doi: 10.1113/jphysiol.1960.sp006566.
7
Synaptic actions on motoneurones caused by impulses in Golgi tendon organ afferents.高尔基腱器官传入纤维冲动对运动神经元的突触作用。
J Physiol. 1957 Sep 30;138(2):227-52. doi: 10.1113/jphysiol.1957.sp005849.
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Crossed reflex effects evoked by activity in myelinated afferent fibers of muscle.肌肉有髓传入纤维活动诱发的交叉反射效应。
J Neurophysiol. 1958 Mar;21(2):101-12. doi: 10.1152/jn.1958.21.2.101.
9
Synaptic actions on motoneurones in relation to the two components of the group I muscle afferent volley.与I类肌肉传入冲动的两个成分相关的对运动神经元的突触作用。
J Physiol. 1957 May 23;136(3):527-46. doi: 10.1113/jphysiol.1957.sp005778.
10
Analysis of the fast afferent impulses from thigh muscles.来自大腿肌肉的快速传入冲动分析。
J Physiol. 1953 Dec 29;122(3):462-73. doi: 10.1113/jphysiol.1953.sp005014.

猫踝伸肌1a和1b类传入神经反射通路中的普通中间神经元。

Common interneurones in reflex pathways from group 1a and 1b afferents of ankle extensors in the cat.

作者信息

Jankowska E, Johannisson T, Lipski J

出版信息

J Physiol. 1981 Jan;310:381-402. doi: 10.1113/jphysiol.1981.sp013556.

DOI:10.1113/jphysiol.1981.sp013556
PMID:7230041
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1274747/
Abstract
  1. Input from group I afferents of ankle and toe extensors, other muscles, skin nerves and descending tracts to interneurones of Rexed's laminae V-VI in the cat spinal cord was analysed using intracellular recording from these interneurones. Adequate stimuli (muscle stretches) were used to activate selectively group Ia muscle spindle afferents of triceps surae and plantaris while other fibre systems were excited electrically. 2. Ia and Ib afferents of ankle and toe extensors were found to co-excite, co-inhibit or exert opposite synaptic actions in 41, 33, and 50% of the analysed interneurones, respectively. Taking into account both excitatory and inhibitory input from these two groups of afferents, 64% of the interneurones appeared to be used in common in reflex pathways from muscle spindles and tendon organs of ankle and toe extensors. 3. Selective input from Ib afferents of triceps surae and plantaris (excitation and/or inhibition) was found in 36% of the interneurones; there was evidence for a similarly selective input from Ia afferents. 4. A great majority (over 90%) of the interneurones excited by group I afferents were also inhibited by group I afferents, from either the same or other muscles. 5. Both monosynaptic and disynaptic e.p.s.p.s from Ia and/or Ib afferents from other muscles and from fibres in the ipsilateral funiculi were found in a great proportion of the same interneurones, together with disynaptic e.p.s.p.s from low threshold cutaneous afferents. 6. Intracellular staining with horseradish peroxidase revealed four different patterns of axonal projections of the analysed interneurones: (i) projections to motor nuclei and the intermediate region, (ii and III) projections only to the intermediate region, locally or combined with projections to different rostro-caudal levels, and (iv) projections to the opposite side of the spinal cord. 7. A large proportion of interneurones projecting to motor nuclei displayed input from both Ia and Ib afferents although such an input was a feature of interneurones with other projections as well. No systematic differences in the input from group I afferents were found for interneurones with different axonal projections. In contrast disynaptic e.p.s.p.s of cutaneous origin and monosynaptic e.p.s.p.s upon stimulation of ipsilateral spinal tracts appeared predominantly in interneurones projecting to motor nuclei.
摘要
  1. 使用猫脊髓中Rexed板层V - VI中间神经元的细胞内记录,分析了来自踝关节和趾伸肌、其他肌肉、皮肤神经的I类传入纤维以及下行传导束向这些中间神经元的输入。使用适当刺激(肌肉拉伸)选择性激活腓肠三头肌和跖肌的Ia类肌梭传入纤维,同时电刺激其他纤维系统。2. 发现踝关节和趾伸肌的Ia和Ib传入纤维在分别41%、33%和50%的分析中间神经元中共同兴奋、共同抑制或发挥相反的突触作用。考虑到这两组传入纤维的兴奋性和抑制性输入,64%的中间神经元似乎在踝关节和趾伸肌的肌梭和腱器官的反射通路中共同使用。3. 在36%的中间神经元中发现了来自腓肠三头肌和跖肌Ib传入纤维的选择性输入(兴奋和/或抑制);有证据表明Ia传入纤维也有类似的选择性输入。4. 绝大多数(超过90%)由I类传入纤维兴奋的中间神经元也受到来自相同或其他肌肉的I类传入纤维的抑制。5. 在很大比例的相同中间神经元中发现了来自其他肌肉的Ia和/或Ib传入纤维以及同侧索中纤维的单突触和双突触兴奋性突触后电位(e.p.s.p.s),以及来自低阈值皮肤传入纤维的双突触e.p.s.p.s。6. 用辣根过氧化物酶进行细胞内染色揭示了所分析中间神经元的四种不同轴突投射模式:(i)投射到运动核和中间区域,(ii和iii)仅投射到中间区域,局部或与投射到不同的头尾水平相结合,以及(iv)投射到脊髓的对侧。7. 很大比例投射到运动核的中间神经元显示出来自Ia和Ib传入纤维的输入,尽管这种输入也是具有其他投射的中间神经元的一个特征。对于具有不同轴突投射的中间神经元,未发现I类传入纤维输入的系统差异。相比之下,皮肤起源的双突触e.p.s.p.s和刺激同侧脊髓束时的单突触e.p.s.p.s主要出现在投射到运动核的中间神经元中。