Kosaka K, Toida K, Aika Y, Kosaka T
Department of Anatomy and Neurobiology, Faculty of Medicine, Kyushu University, Fukuoka, Japan.
Neurosci Res. 1998 Feb;30(2):101-10. doi: 10.1016/s0168-0102(98)00002-9.
Recent progress in the studies of the olfactory system, especially in the molecular biological studies, makes it one of the useful sensory model systems for understanding neural mechanisms for the information processing. In the olfactory bulb, the primary center of the olfactory system, glomeruli are regarded as important functional units in the transmission of odorant signals and in processing the olfactory information, but have been believed to be composed by only a small number of neuronal types and thus to be simple in their neuronal and synaptic organization. However, accumulating morphological data reveal that each type of neurons might further consist of several different subpopulations, indicating that the organization of glomeruli might not be so simple as it was believed. Here we describe an aspect of the structural organization of glomeruli, focusing on the heterogeneities of periglomerular neurons in mammalian main olfactory bulb.
嗅觉系统研究的最新进展,尤其是分子生物学研究方面的进展,使其成为理解信息处理神经机制的有用感觉模型系统之一。在嗅觉系统的主要中枢嗅球中,肾小球被视为气味信号传递和嗅觉信息处理中的重要功能单元,但一直被认为仅由少数几种神经元类型组成,因此其神经元和突触组织较为简单。然而,越来越多的形态学数据表明,每种类型的神经元可能还进一步由几个不同的亚群组成,这表明肾小球的组织可能不像人们认为的那么简单。在这里,我们描述肾小球结构组织的一个方面,重点关注哺乳动物主嗅球中球周神经元的异质性。