Harrison P J, Jankowska E, Zytnicki D
J Physiol. 1986 Feb;371:147-66. doi: 10.1113/jphysiol.1986.sp015965.
The location of a group of interneurones projecting to contralateral motor nuclei has been established using retrograde transneuronal transport of horseradish peroxidase conjugated with wheat germ agglutinin (WGA-HRP). After labelling the motoneurones of semitendinosus, medial gastrocnemius or quadriceps muscles, interneurones which were secondarily labelled were found in lamina VIII and in the neighbouring narrow strip of lamina VII. They were found to be distributed from the 4th lumbar to the 1st sacral segments, with the highest concentration in the 6th and 7th lumbar segments and at the border between the 4th and 5th lumbar segments. The electrophysiological properties of lamina VIII interneurones of the 6th lumbar segment have been investigated using both extracellular and intracellular recording. Many of these interneurones could be antidromically activated following weak stimuli applied in contralateral motor nuclei. Post-synaptic potentials were evoked from a variety of primary afferents including group I muscle afferents. However, when present, the post-synaptic potentials (p.s.p.s) of group I origin were of considerably smaller amplitudes than p.s.p.s. evoked from higher threshold muscle or cutaneous afferents and smaller than p.s.p.s. which followed stimulation of the spinal cord at the thoracic level. P.s.p.s. from the latter two sources appear to constitute the main input to lamina VIII interneurones. Group I input has been found in forty lamina VIII interneurones. These were usually affected by either ipsilateral or contralateral group I afferents and only exceptionally by both. Excitatory post-synaptic potentials (e.p.s.p.s) from ipsilateral afferents were evoked in about twice as many neurones as e.p.s.p.s from the contralateral afferents. E.p.s.p.s were often accompanied by inhibitory post-synaptic potentials (i.p.s.p.s). Group Ia afferents appeared to contribute to both e.p.s.p.s and i.p.s.p.s, whether these were evoked from ipsilateral or from contralateral afferents. In several cases Ia afferents were as effective as all group I afferents while in other cases Ib afferents appeared to be an important or even the exclusive source of the p.s.p.s. The latencies of e.p.s.p.s indicated that they were evoked mono-, di- or trisynaptically from ipsilateral group I afferents and di- or trisynaptically from contralateral afferents, I.p.s.p.s appeared to be evoked via pathways with only one additional interneurone. About one-third of all the intracellularly investigated lamina VIII interneurones were both affected by group I afferents and antidromically activated from the contralateral motor nuclei.(ABSTRACT TRUNCATED AT 400 WORDS)
利用与小麦胚凝集素结合的辣根过氧化物酶(WGA-HRP)逆行跨神经元运输,已确定了一组投射至对侧运动核的中间神经元的位置。在用WGA-HRP标记半腱肌、腓肠肌内侧头或股四头肌的运动神经元后,在第VIII层和相邻的狭窄第VII层条带中发现了继发标记的中间神经元。它们分布于第4腰椎至第1骶节段,在第6和第7腰椎节段以及第4和第5腰椎节段之间的边界处浓度最高。已使用细胞外和细胞内记录法研究了第6腰椎节段第VIII层中间神经元的电生理特性。在对侧运动核施加弱刺激后,许多这些中间神经元可被逆向激活。多种初级传入纤维可诱发突触后电位,包括I组肌传入纤维。然而,当存在时,I组起源的突触后电位(p.s.p.s)的幅度明显小于由较高阈值的肌肉或皮肤传入纤维诱发的p.s.p.s,且小于在胸段刺激脊髓后产生的p.s.p.s。后两种来源的p.s.p.s似乎构成了第VIII层中间神经元的主要输入。在40个第VIII层中间神经元中发现了I组输入。这些中间神经元通常受同侧或对侧I组传入纤维的影响,仅在极少数情况下受两者影响。来自同侧传入纤维的兴奋性突触后电位(e.p.s.p.s)在神经元中诱发的数量约为来自对侧传入纤维的e.p.s.p.s的两倍。e.p.s.p.s常伴有抑制性突触后电位(i.p.s.p.s)。Ia组传入纤维似乎对e.p.s.p.s和i.p.s.p.s都有贡献,无论这些电位是由同侧还是对侧传入纤维诱发的。在一些情况下,Ia组传入纤维与所有I组传入纤维的作用相同,而在其他情况下,Ib组传入纤维似乎是p.s.p.s的重要甚至唯一来源。e.p.s.p.s的潜伏期表明,它们由同侧I组传入纤维单突触、双突触或三突触诱发,由对侧传入纤维双突触或三突触诱发,i.p.s.p.s似乎通过仅增加一个中间神经元的通路诱发。在所有经细胞内研究的第VIII层中间神经元中,约三分之一既受I组传入纤维影响,又可从对侧运动核逆向激活。(摘要截取自400字)