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梨状皮质深层神经元。I. 形态学与突触诱发反应,包括独特的高幅度双脉冲刺激易化现象

Deep neurons in piriform cortex. I. Morphology and synaptically evoked responses including a unique high-amplitude paired shock facilitation.

作者信息

Tseng G F, Haberly L B

机构信息

Department of Anatomy, University of Wisconsin-Madison 53706.

出版信息

J Neurophysiol. 1989 Aug;62(2):369-85. doi: 10.1152/jn.1989.62.2.369.

Abstract
  1. Synaptic responses of cells in layer III of the piriform cortex and the subjacent endopiriform nucleus (layer IV) were analyzed with intracellular recording techniques in a slice preparation from the rat, cut perpendicular to the pial surface. 2. Micropipettes containing Lucifer yellow (LY) were used to correlate response properties with morphology. An antiserum to LY was used to intensify staining and to prevent fading during detailed morphological study. Response properties were also examined with potassium acetate-containing electrodes. 3. Morphologically, two cell types were identified: pyramidal cells that were confined to layer III of the piriform cortex and multipolar cells that were in layer III and the endopiriform nucleus. 4. In morphology, deep pyramidal cells in layer III closely resembled superficial pyramidal cells in layer II, with the exception that primary apical dendritic trunks were longer and basal dendritic arborizations were more extensive than apical. Like superficial pyramidal cells, apical dendrites of all deep pyramidal cells stained extended through the afferent fiber termination zone in layer Ia and gave rise to local axonal arbors that were concentrated in layer III and the endopiriform nucleus. 5. Multipolar cells were morphologically indistinguishable in layer III and the endopiriform nucleus. All gave rise to nonvaricose spiny dendrites that never extended into layer II and local axonal arbors. 6. Response properties of deep pyramidal and multipolar cells were similar; responses of both of these populations were very different from those of superficial pyramidal cells. The primary difference between responses of deep pyramidal and multipolar cells was a shorter latency of postsynaptic potentials evoked in deep pyramidal cells by stimulation of afferent fibers, consistent with the extension of their dendrites into layer Ia. 7. Responses of most deep cells to stimulation of afferent and association fibers at sufficiently high strength consisted of an initial excitatory postsynaptic potential (EPSP), followed by a fast Cl- -mediated and a slow K+-mediated inhibitory postsynaptic potential (IPSP). 8. A characteristic feature of deep cells, which was only rarely observed in superficial pyramidal cells, was the presence of variable EPSPs evoked at long latencies (greater than 100 ms) by stimulation of afferent or association fibers. 9. A striking finding for deep pyramidal and multipolar cells, when studied with LY-containing pipettes, was a variable slowly rising depolarizing potential triggered at depolarized membrane potentials by stimulation of afferent or association fibers.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在垂直于软脑膜表面切割的大鼠脑片标本中,运用细胞内记录技术分析了梨状皮层第III层和下方的内梨状核(第IV层)细胞的突触反应。2. 使用含有荧光黄(LY)的微电极,将反应特性与形态学进行关联。一种针对LY的抗血清用于增强染色,并在详细的形态学研究过程中防止褪色。也使用含醋酸钾的电极检查反应特性。3. 在形态学上,鉴定出两种细胞类型:局限于梨状皮层第III层的锥体细胞和位于第III层以及内梨状核的多极细胞。4. 在形态上,第III层的深层锥体细胞与第II层的浅层锥体细胞非常相似,不同之处在于其初级顶端树突干更长,且基底树突分支比顶端更广泛。与浅层锥体细胞一样,所有染色的深层锥体细胞的顶端树突都穿过第Ia层的传入纤维终末区,并产生集中在第III层和内梨状核的局部轴突分支。5. 多极细胞在第III层和内梨状核中的形态无法区分。所有多极细胞都产生无曲张的棘状树突,这些树突从不延伸到第II层,并产生局部轴突分支。6. 深层锥体细胞和多极细胞的反应特性相似;这两类细胞的反应与浅层锥体细胞的反应非常不同。深层锥体细胞和多极细胞反应之间的主要差异在于,刺激传入纤维时,深层锥体细胞诱发的突触后电位潜伏期较短,这与其树突延伸到第Ia层一致。7. 大多数深层细胞在足够高强度刺激传入纤维和联合纤维时,反应包括一个初始兴奋性突触后电位(EPSP),随后是快速的Cl⁻介导和缓慢的K⁺介导的抑制性突触后电位(IPSP)。8. 深层细胞的一个特征是,在浅层锥体细胞中很少观察到,即刺激传入纤维或联合纤维时,会在长潜伏期(大于100毫秒)诱发可变的EPSP。9. 当用含LY的微电极研究深层锥体细胞和多极细胞时,一个显著发现是,刺激传入纤维或联合纤维时,在去极化膜电位触发可变的缓慢上升的去极化电位。(摘要截选至400字)

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