Suppr超能文献

主嗅球的功能组织

Functional organization of the main olfactory bulb.

作者信息

Scott J W, Wellis D P, Riggott M J, Buonviso N

机构信息

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

出版信息

Microsc Res Tech. 1993 Feb 1;24(2):142-56. doi: 10.1002/jemt.1070240206.

Abstract

Complete understanding of the role of the mammalian main olfactory bulb in sensory processing has remained elusive despite many detailed studies on its anatomy and physiology. Several lines of recent evidence viewed in the context of earlier knowledge have provided new insights into the bulbar mechanisms of olfactory coding. The output cells of the olfactory bulb receive a localized olfactory nerve input and interneuronal input via dendrodendritic synapses on distinct sets of dendrites. The spatial arrangement of granule cell contacts on output cell basal dendrites suggests that lateral inhibitory interactions may occur between neighboring output cells. The input from olfactory receptor cell axons to the bulb also has spatial order, but does not represent a precise map of the receptor surface. Recent studies with antibodies and lectins suggest that different groups of axons from chemically similar receptor cells collect into certain glomeruli, even if the axons originate from cells that are not contiguous in the mucosa. Electrophysiological studies have begun to explore the participation of spatially organized circuits in olfactory processing. The degree to which neighboring output cells respond similarly to odor stimulation, for example, depends on the distance between the cells, with those further apart showing complementary responses. Also, a single output cell can show 2 or more different temporal response patterns when different odors are presented. Intracellular recordings indicate that these responses are shaped by IPSPs. Electrical stimulation during such recordings shows that some mitral cells are excited by nerve inputs close to their glomerular tufts, while they are inhibited by nerve inputs to other parts of the bulb. Finally, recordings from granule and periglomerular cells indicate their potential in mediating components of output cell odor responses. These considerations suggest that the olfactory bulb performs a spatially based analysis on the information coming from the receptor cells. While the spatial organization of the olfactory bulb is probably not faithfully represented in the projections to the olfactory cortex, bulbocortical projections are not random. The fact that spatial factors exist at each of these levels in the olfactory system must be considered in developing models of central olfactory processing.

摘要

尽管对哺乳动物主嗅球在感觉处理中的作用进行了许多详细的解剖学和生理学研究,但仍难以完全理解。结合早期知识来看,最近的几条证据为嗅球嗅觉编码机制提供了新的见解。嗅球的输出细胞通过不同树突组上的树突-树突突触接受局部嗅觉神经输入和中间神经元输入。颗粒细胞与输出细胞基底树突的接触空间排列表明,相邻输出细胞之间可能发生侧向抑制相互作用。嗅觉受体细胞轴突向嗅球的输入也具有空间顺序,但并不代表受体表面的精确图谱。最近用抗体和凝集素进行的研究表明,化学性质相似的受体细胞的不同轴突组会聚集到某些肾小球中,即使这些轴突来自黏膜中不相邻的细胞。电生理研究已开始探索空间组织回路在嗅觉处理中的参与情况。例如,相邻输出细胞对气味刺激的反应相似程度取决于细胞之间的距离,距离越远反应越互补。此外,当呈现不同气味时,单个输出细胞可表现出两种或更多种不同的时间反应模式。细胞内记录表明,这些反应是由抑制性突触后电位形成的。此类记录过程中的电刺激表明,一些二尖瓣细胞在靠近其肾小球丛的神经输入刺激下兴奋,而在嗅球其他部位的神经输入刺激下受到抑制。最后,颗粒细胞和球周细胞的记录表明它们在介导输出细胞气味反应成分方面的潜力。这些考虑表明,嗅球对来自受体细胞的信息进行基于空间的分析。虽然嗅球的空间组织在向嗅觉皮层的投射中可能没有得到如实呈现,但嗅球-皮层投射并非随机。在构建中枢嗅觉处理模型时,必须考虑嗅觉系统中这些层面上均存在空间因素这一事实。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验