首页> 外文OA文献 >Synaptic connections between layer 4 spiny neurone- layer 2/3 pyramidal cell pairs in juvenile rat barrel cortex: physiology and anatomy of interlaminar signalling within a cortical column
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Synaptic connections between layer 4 spiny neurone- layer 2/3 pyramidal cell pairs in juvenile rat barrel cortex: physiology and anatomy of interlaminar signalling within a cortical column

机译:幼年大鼠桶状皮质中第4层有刺神经元第2/3层锥体细胞对之间的突触连接:皮层内层间信号的生理和解剖

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摘要

Whole-cell voltage recordings were obtained from 64 synaptically coupled excitatory layer 4 (L4) spiny neurones and L2/3 pyramidal cells in acute slices of the somatosensory cortex (‘barrel’ cortex) of 17- to 23-days-old rats. Single action potentials (APs) in the L4 spiny neurone evoked single unitary EPSPs in the L2/3 pyramidal cell with a peak amplitude of 0.7 ± 0.6 mV. The average latency was 2.1 ± 0.6 ms, the rise time was 0.8 ± 0.3 ms and the decay time constant was 12.7 ± 3.5 ms. The percentage of failures of an AP in a L4 spiny neurone to evoke a unitary EPSP in the L2/3 pyramidal cell was 4.9 ± 8.8 % and the coefficient of variation (c.v.) of the unitary EPSP amplitude was 0.27 ± 0.13. Both c.v. and percentage of failures decreased with increased average EPSP amplitude. Postsynaptic glutamate receptors (GluRs) in L2/3 pyramidal cells were of the N-methyl-d-aspartate (NMDA) receptor (NMDAR) and the non-NMDAR type. At −60 mV in the presence of extracellular Mg2+ (1 mm), 29 ± 15 % of the EPSP voltage-time integral was blocked by NMDAR antagonists. In 0 Mg2+, the NMDAR/AMPAR ratio of the EPSC was 0.50 ± 0.29, about half the value obtained for L4 spiny neurone connections. Burst stimulation of L4 spiny neurones showed that EPSPs in L2/3 pyramidal cells depressed over a wide range of frequencies (1–100 s−1). However, at higher frequencies (30 s−1) EPSP summation overcame synaptic depression so that the summed EPSP was larger than the first EPSP amplitude in the train. The number of putative synaptic contacts established by the axonal collaterals of the L4 projection neurone with the target neurone in layer 2/3 varied between 4 and 5, with an average of 4.5 ± 0.5 (n = 13 pairs). Synapses were established on basal dendrites of the pyramidal cell. Their mean geometric distance from the pyramidal cell soma was 67 ± 34 μm (range, 16–196 μm). The results suggest that each connected L4 spiny neurone produces a weak but reliable EPSP in the pyramidal cell. Therefore transmission of signals to layer 2/3 is likely to have a high threshold requiring simultaneous activation of many L4 neurons, implying that L4 spiny neurone to L2/3 pyramidal cell synapses act as a gate for the lateral spread of excitation in layer 2/3.
机译:全细胞电压记录来自于17至23天大的大鼠体感皮层(“桶状”皮层)的急性切片中的64个突触耦合的兴奋性第4层(L4)棘突神经元和L2 / 3锥体细胞。 L4刺神经元中的单动作电位(APs)引起L2 / 3锥体细胞中的单一单一EPSP,其峰值幅度为0.7±0.6 mV。平均等待时间为2.1±0.6 ms,上升时间为0.8±0.3 ms,衰减时间常数为12.7±3.5 ms。 L4棘突神经元中AP激发L2 / 3锥体细胞中单一EPSP的失败百分比为4.9±8.8%,单一EPSP振幅的变异系数(c.v.)为0.27±0.13。双方简历故障的百分比随着平均EPSP幅度的增加而降低。 L2 / 3锥体细胞中的突触后谷氨酸受体(GluRs)是N-甲基-d-天冬氨酸(NMDA)受体(NMDAR)和非NMDAR类型。在存在细胞外Mg2 +(1 mm)的情况下,在-60 mV时,NMDAR拮抗剂阻断了29±15%的EPSP电压-时间积分。在0 Mg2 +中,EPSC的NMDAR / AMPAR比为0.50±0.29,约为L4棘神经元连接所获得值的一半。对L4棘突神经元的突发刺激表明,L2 / 3锥体细胞中的EPSP在很宽的频率范围内(1-100 s-1)受到抑制。但是,在较高的频率(30 s-1)下,EPSP求和克服了突触抑制,因此求和的EPSP大于火车中的第一个EPSP幅度。由L4投射神经元的轴突侧支与第2/3层中的目标神经元建立的假定的突触接触数在4至5之间变化,平均为4.5±0.5(n = 13对)。突触建立在锥体细胞的基底树突上。它们与锥体细胞体的平均几何距离为67±34μm(范围16–196μm)。结果表明,每个连接的L4刺神经元在锥体细胞中产生弱但可靠的EPSP。因此,将信号传输到第2/3层可能具有较高的阈值,需要同时激活许多L4神经元,这意味着L2 / 3锥体细胞突触的L4多刺神经元充当第2/3层中激发横向扩散的门3。

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