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猫联合皮层神经元中抑制性突触后电位不存在普遍的分层分布。

Absence of a prevalent laminar distribution of IPSPs in association cortical neurons of cat.

作者信息

Contreras D, Dürmüller N, Steriade M

机构信息

Laboratoire de Neurophysiologie, Faculté de Médecine, Université Laval, Quebec G1K 7P4, Canada.

出版信息

J Neurophysiol. 1997 Nov;78(5):2742-53. doi: 10.1152/jn.1997.78.5.2742.

Abstract

Absence of a prevalent laminar distribution of IPSPs in association cortical neurons of cat. J. Neurophysiol. 78: 2742-2753, 1997. The depth distribution of inhibitory postsynaptic potentials (IPSPs) was studied in cat suprasylvian (association) cortex in vivo. Single and dual simultaneous intracellular recordings from cortical neurons were performed in the anterior part of suprasylvian gyrus (area 5). Synaptic responses were obtained by stimulating the suprasylvian cortex, 2-3 mm anterior to the recording site, as well as the thalamic lateral posterior (LP) nucleus. Neurons were recorded from layers 2 to 6 and were classified as regular spiking (RS, n = 132), intrinsically bursting (IB, n = 24), and fast spiking (FS, n = 4). Most IB cells were located in deep layers (below 0.7 mm, n = 19), but we also found some IB cells more superficially (between 0.2 and 0.5 mm, n = 5). Deeply lying corticothalamic neurons were identified by their antidromic invasion on thalamic stimulation. Neurons responded with a combination of excitatory postsynaptic potentials (EPSPs) and IPSPs to both cortical and thalamic stimulation. No consistent relation was found between cell type or cell depth and the amplitude or duration of the IPSPs. In response to thalamic stimulation, RS cells had IPSPs of 7.9 +/- 0.9 (SE) mV amplitude and 88.9 +/- 6.4 ms duration. In IB cells, IPSPs elicited by thalamic stimulation had 7.4 +/- 1.3 mV amplitude and 84.7 +/- 14.3 ms duration. The differences between the two (RS and IB) groups were not statistically significant. Compared with thalamically elicited inhibitory responses, cortical stimulation evoked IPSPs with higher amplitude (12.3 +/- 1.7 mV) and longer duration (117 +/- 17.3 ms) at all depths. Both cortically and thalamically evoked IPSPs were predominantly monophasic. Injections of Cl- fully reversed thalamically as well as cortically evoked IPSPs and revealed additional late synaptic components in response to cortical stimulation. These data show that the amount of feed forward and feedback inhibition to cat's cortical association cells is not orderly distributed to distinct layers. Thus local cortical microcircuitry goes beyond the simplified structure determined by cortical layers.

摘要

猫联合皮层神经元中抑制性突触后电位(IPSPs)缺乏普遍的分层分布。《神经生理学杂志》78: 2742 - 2753, 1997年。在活体猫的上薛氏(联合)皮层中研究了抑制性突触后电位(IPSPs)的深度分布。在薛氏回前部(5区)对皮层神经元进行单通道和双通道同步细胞内记录。通过刺激记录部位前方2 - 3毫米处的薛氏皮层以及丘脑外侧后核(LP核)获得突触反应。从第2层到第6层记录神经元,并将其分为规则发放(RS,n = 132)、内在爆发(IB,n = 24)和快速发放(FS,n = 4)。大多数IB细胞位于深层(0.7毫米以下,n = 19),但我们也在较浅位置(0.2至0.5毫米之间,n = 5)发现了一些IB细胞。通过丘脑刺激时的逆向侵入鉴定出深层的皮质丘脑神经元。神经元对皮层和丘脑刺激的反应均为兴奋性突触后电位(EPSPs)和IPSPs的组合。未发现细胞类型或细胞深度与IPSPs的幅度或持续时间之间存在一致关系。对丘脑刺激的反应中,RS细胞的IPSPs幅度为7.9±0.9(SE)毫伏,持续时间为88.9±6.4毫秒。在IB细胞中,丘脑刺激引发的IPSPs幅度为7.4±1.3毫伏,持续时间为84.7±14.3毫秒。两组(RS和IB)之间的差异无统计学意义。与丘脑引发的抑制性反应相比,皮层刺激在所有深度均引发幅度更高(12.3±1.7毫伏)和持续时间更长(117±17.3毫秒)的IPSPs。皮层和丘脑引发的IPSPs均主要为单相。注射氯离子完全逆转了丘脑和皮层引发的IPSPs,并揭示了对皮层刺激的额外晚期突触成分。这些数据表明,对猫皮层联合细胞的前馈和反馈抑制量并非有序地分布到不同层。因此,局部皮层微回路超出了由皮层层决定的简化结构。

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