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大鼠嗅球外丛状层的抑制组织

Organization of inhibition in the rat olfactory bulb external plexiform layer.

作者信息

Ezeh P I, Wellis D P, Scott J W

机构信息

Department of Anatomy and Cell Biology, Emory University School of Medicine, Atlanta, Georgia 30322.

出版信息

J Neurophysiol. 1993 Jul;70(1):263-74. doi: 10.1152/jn.1993.70.1.263.

Abstract
  1. Intracellular recordings were made from the output neurons (mitral and tufted cells) of the rat olfactory bulb during electrical orthodromic stimulation of the olfactory nerve layer (ONL) and antidromic stimulation of the lateral olfactory tract and posterior piriform cortex (pPC) to test for physiological differences among the neuron types. Many of these neurons were identified by intracellular injections of biocytin, and others were identified by their pattern of antidromic activation. 2. Both marked and unmarked mitral cells showed large inhibitory postsynaptic potentials (IPSPs) in response to antidromic stimulation of the pPC, whereas tufted cells exhibited small IPSPs in response to pPC stimulation. Tufted cells, however, showed large IPSPs in response to ONL stimulation. In many cases, these tufted cell responses to ONL stimulation were larger than the mitral cell responses. The marked superficial tufted cells, those with basal dendrites in the superficial sublayer of the external plexiform layer (EPL), had the smallest IPSPs in response to pPC stimulation. These data support anatomic observations suggesting that the granule cell populations responsible for the IPSPs may be different for mitral and for superficial tufted cells. 3. The different types of output cells also showed differences in their responses to orthodromic stimulation. Type I mitral cells, which have basal dendrites confined to the deep sublayer of the EPL, were significantly less excitable by ONL stimulation than were the type II mitral cells, which have basal dendrites distributed within the intermediate sublayer of the EPL. Half of the type I mitral cells could not be excited at all by ONL stimulation. Superficial tufted cells showed even greater orthodromic excitability than type II mitral cells, usually responding to ONL stimulation with two or more spikes. 4. The ionic basis of the IPSPs in the superficial tufted cells appeared similar to those described for mitral cells. These IPSPs could be reversed by chloride injection and were associated with increased membrane conductance. 5. For both mitral and tufted cells, the number of ONL electrodes evoking IPSPs was greater than the number evoking spikes. These data suggest a kind of center-surround organization of inputs to these cells from the ONL, although this does not yet imply that the sensory receptive field of these output cells has a center-surround organization. 6. In conclusion, the properties of rat olfactory bulb output cells correlate with the sublayers of the EPL in which their basal dendrites lie.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在对大鼠嗅球的输出神经元(僧帽细胞和簇状细胞)进行细胞内记录时,对嗅神经层(ONL)进行电顺向刺激,并对外侧嗅束和梨状后皮质(pPC)进行逆向刺激,以测试不同类型神经元之间的生理差异。许多这些神经元通过细胞内注射生物素进行识别,其他神经元则通过其逆向激活模式进行识别。2. 无论是标记的还是未标记的僧帽细胞,在对pPC进行逆向刺激时都会表现出较大的抑制性突触后电位(IPSP),而簇状细胞在对pPC刺激时则表现出较小的IPSP。然而,簇状细胞在对ONL刺激时会表现出较大的IPSP。在许多情况下,这些簇状细胞对ONL刺激的反应大于僧帽细胞的反应。标记的浅层簇状细胞,即其基底树突位于外丛状层(EPL)浅层亚层的细胞,在对pPC刺激时的IPSP最小。这些数据支持了解剖学观察结果,即负责产生IPSP的颗粒细胞群体在僧帽细胞和浅层簇状细胞中可能不同。3. 不同类型的输出细胞在对顺向刺激的反应中也表现出差异。I型僧帽细胞的基底树突局限于EPL的深层亚层,与II型僧帽细胞相比,对ONL刺激的兴奋性明显较低,II型僧帽细胞的基底树突分布在EPL的中间亚层。一半的I型僧帽细胞根本无法被ONL刺激所兴奋。浅层簇状细胞表现出比II型僧帽细胞更高的顺向兴奋性,通常对ONL刺激以两个或更多个峰电位做出反应。4. 浅层簇状细胞中IPSP的离子基础似乎与僧帽细胞中描述的相似。这些IPSP可以通过注射氯化物来逆转,并且与膜电导增加有关。5. 对于僧帽细胞和簇状细胞,诱发IPSP的ONL电极数量都多于诱发峰电位的电极数量。这些数据表明从ONL到这些细胞的输入存在一种中心 - 外周组织形式,尽管这尚未意味着这些输出细胞的感觉感受野具有中心 - 外周组织形式。6. 总之,大鼠嗅球输出细胞的特性与其基底树突所在的EPL亚层相关。(摘要截选至400字)

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