Ferster D, Lindström S
J Physiol. 1985 Oct;367:233-52. doi: 10.1113/jphysiol.1985.sp015822.
Antidromic activation of layer 6 cortico-geniculate cells from the lateral geniculate nucleus (l.g.n.) was used to study synaptic effects mediated by their intracortical axon collaterals. A specific stimulation procedure, earlier shown to suppress geniculo-cortical synaptic effects and to enhance synaptic effects from layer 6 cell collaterals was employed to differentiate between inputs from the two pathways. Single cells in different cortical layers were recorded both extra- and intracellularly with glass micro-electrodes. Antidromic activation of cortico-geniculate cells at 10-16 Hz induced massive, usually repetitive, spike discharges in almost all cells in layers 2-5. The shortest latency for this synaptic activation (3.4-7.5 ms) was found for simple cells in layer 4. Cells in layers 2, 3 and 5 responded with progressively longer latencies. Cortico-geniculate cells in layer 6 were atypical in that hardly any responded with synaptic discharges to the stimulation. Intracellular recordings from layer 4 cells revealed, besides a monosynaptic excitatory post-synaptic potential (e.p.s.p.) from geniculo-cortical fibres, a late e.p.s.p. with a latency of 3.0-4.2 ms. This e.p.s.p. could only be evoked from stimulation sites within the A laminae of the l.g.n. in retinotopic register with the recording site in the cortex. No corresponding potential was obtained by stimulation of the optic tract or the superior colliculus. The threshold intensity for the late e.p.s.p. in layer 4 cells was much higher than for the geniculo-cortical e.p.s.p.s from the same stimulation sites, indicating that the effect was mediated by thin fibres. The late e.p.s.p.s increased dramatically in size with repetitive stimulation of the l.g.n. at frequencies above 7 Hz, while the geniculo-cortical e.p.s.p.s remained unchanged. In all these properties, the late e.p.s.p.s resemble similar e.p.s.p.s evoked monosynaptically in principal cells of the l.g.n. by orthodromic activation of cortico-geniculate fibres. Large e.p.s.p.s were evoked also in complex cells of layers 2, 3 and 5 and in simple cells of layer 6 upon antidromic stimulation of cortico-geniculate fibres. The sample included many efferent neurones, identified as projection cells by antidromic activation from extracortical stimulation sites. The latency and behaviour of the e.p.s.p.s in these cells indicate that the effect was mediated indirectly via layer 4 cells. Presumably, the excitation travelled along an earlier identified chain of neurones, going from layer 4 to layers 2 and 3, from there to layer 5 and then to layer 6.(ABSTRACT TRUNCATED AT 400 WORDS)
利用从外侧膝状体核(l.g.n.)对第6层皮质-膝状体细胞的逆向激活,来研究由其皮质内轴突侧支介导的突触效应。采用一种特定的刺激程序,该程序先前已被证明可抑制膝状体-皮质突触效应,并增强来自第6层细胞侧支的突触效应,以区分来自这两条通路的输入。使用玻璃微电极在细胞外和细胞内记录不同皮质层中的单个细胞。以10 - 16Hz的频率对皮质-膝状体细胞进行逆向激活,在第2 - 5层的几乎所有细胞中诱导出大量的、通常是重复性的动作电位发放。在第4层的简单细胞中发现这种突触激活的最短潜伏期为3.4 - 7.5毫秒。第2、3和5层的细胞反应潜伏期逐渐变长。第6层的皮质-膝状体细胞不典型,几乎没有细胞对刺激产生突触发放反应。对第4层细胞的细胞内记录显示,除了来自膝状体-皮质纤维的单突触兴奋性突触后电位(e.p.s.p.)外,还有一个潜伏期为3.0 - 4.2毫秒的晚期e.p.s.p.。这个e.p.s.p.只能从与皮质记录部位视网膜拓扑对应的l.g.n.的A层内的刺激部位诱发。刺激视束或上丘未获得相应电位。第4层细胞中晚期e.p.s.p.的阈值强度远高于来自相同刺激部位的膝状体-皮质e.p.s.p.s,表明该效应是由细纤维介导的。当以高于7Hz的频率重复刺激l.g.n.时,晚期e.p.s.p.s的大小急剧增加,而膝状体-皮质e.p.s.p.s保持不变。在所有这些特性方面,晚期e.p.s.p.s类似于通过皮质-膝状体纤维的顺向激活在l.g.n.的主要细胞中以单突触方式诱发的类似e.p.s.p.s。在对皮质-膝状体纤维进行逆向刺激时,第2、3和5层的复杂细胞以及第6层的简单细胞中也诱发了大的e.p.s.p.s。样本中包括许多传出神经元,通过来自皮质外刺激部位的逆向激活被鉴定为投射细胞。这些细胞中e.p.s.p.s的潜伏期和表现表明该效应是通过第4层细胞间接介导的。推测,兴奋沿着先前确定的神经元链传播,从第4层到第2和3层,从那里到第5层,然后到第6层。(摘要截取自400字)