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运用细胞内记录和染色技术对梨状皮质联合纤维系统进行分析。

Analysis of association fiber system in piriform cortex with intracellular recording and staining techniques.

作者信息

Haberly L B, Bower J M

出版信息

J Neurophysiol. 1984 Jan;51(1):90-112. doi: 10.1152/jn.1984.51.1.90.

Abstract

The piriform cortex of the opossum has been studied with intracellular recording and staining techniques. The experiments were designed to investigate the association fiber system, but the results have also revealed new properties of the afferent fiber system from the olfactory bulb and the inhibitory systems within the piriform cortex. Following shock stimulation of the lateral olfactory tract (LOT), the response of pyramidal cells consists of an initial excitatory postsynaptic potential (EPSP) followed by a long-lasting inhibitory postsynaptic potential (IPSP). The LOT-evoked EPSP consists of two components: an initial monosynaptic followed by a disynaptic component. The monosynaptic EPSP can be isolated by the use of conditioning LOT shocks to block the IPSP and disynaptic EPSP. The disynaptic EPSP can be demonstrated by cutting LOT fibers at the surface of the cortex to eliminate the monosynaptic EPSP and by the use of bicuculline to block the IPSP. The latency of the IPSP is sufficiently brief so that the disynaptic EPSP is blocked at presumed intrasomatic recording sites unless these experimental manipulations are carried out. In all histologically verified pyramidal cells in both layers II and III in which the appropriate tests were carried out, both mono- and disynaptic EPSP components were present. It was concluded on the basis of anatomical considerations, however, that a small number of pyramidal cells would be expected to receive only a disynaptic EPSP. Evidence that the LOT-evoked disynaptic EPSP is mediated, at least in part, by association axons was provided by direct stimulation of these fibers in layer III and by demonstrating that the EPSP is present distal to cuts that sever LOT axons. Direct stimulation of association axons in layer III evokes both a monosynaptic EPSP and a disynaptic IPSP in pyramidal cells at similar latencies. This IPSP is indistinguishable in properties from that evoked by LOT stimulation. Indirect evidence indicates that it is mediated via both feedforward and feedback mechanisms. In most neurons the association fiber-evoked EPSP is masked by the IPSP in response to single deep shocks but can be demonstrated by blocking the IPSP with a preceding LOT shock or by application of bicuculline. Intracellular injection of horseradish peroxidase (HRP) revealed that pyramidal cell axons give rise to an extensive system of local collaterals with a large number of synaptic terminal-like swellings in layer III. It is postulated that these collaterals synapse on both pyramidal and nonpyramidal cells.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

负鼠的梨状皮质已采用细胞内记录和染色技术进行了研究。这些实验旨在研究联合纤维系统,但结果也揭示了来自嗅球的传入纤维系统以及梨状皮质内抑制系统的新特性。在对外侧嗅束(LOT)进行电休克刺激后,锥体细胞的反应包括一个初始的兴奋性突触后电位(EPSP),随后是一个持续时间较长的抑制性突触后电位(IPSP)。LOT诱发的EPSP由两个成分组成:一个初始的单突触成分,随后是一个双突触成分。单突触EPSP可以通过使用条件性LOT电休克来阻断IPSP和双突触EPSP而分离出来。双突触EPSP可以通过在皮质表面切断LOT纤维以消除单突触EPSP,并使用荷包牡丹碱来阻断IPSP来证明。IPSP的潜伏期足够短暂,以至于除非进行这些实验操作,否则在假定的体细胞内记录部位双突触EPSP会被阻断。在进行了适当测试的II层和III层所有经组织学证实的锥体细胞中,单突触和双突触EPSP成分均存在。然而,基于解剖学考虑得出的结论是,预计少数锥体细胞只会接受双突触EPSP。通过直接刺激III层中的这些纤维以及证明在切断LOT轴突的切口远端存在EPSP,提供了证据表明LOT诱发的双突触EPSP至少部分是由联合轴突介导的。直接刺激III层中的联合轴突在锥体细胞中以相似的潜伏期诱发一个单突触EPSP和一个双突触IPSP。这个IPSP在性质上与LOT刺激诱发的IPSP无法区分。间接证据表明它是通过前馈和反馈机制介导的。在大多数神经元中,联合纤维诱发的EPSP在对单个深度电休克的反应中被IPSP掩盖,但可以通过用先前的LOT电休克阻断IPSP或应用荷包牡丹碱来证明。细胞内注射辣根过氧化物酶(HRP)显示,锥体细胞轴突产生一个广泛的局部侧支系统,在III层中有大量类似突触终末的肿胀。据推测,这些侧支与锥体细胞和非锥体细胞都形成突触。(摘要截断于400字)

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