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梨状皮层主神经元的两层突触处理。

Two layers of synaptic processing by principal neurons in piriform cortex.

机构信息

Department of Neuroscience, The John Curtin School of Medical Research, The Australian National University, Canberra, Australian Capital Territory 0200, Australia.

出版信息

J Neurosci. 2011 Feb 9;31(6):2156-66. doi: 10.1523/JNEUROSCI.5430-10.2011.

Abstract

The primary olfactory (or piriform) cortex is a trilaminar paleocortex that is thought to construct unified "odor images" from the odor components identified by the olfactory bulb. How the piriform cortex (PC) accomplishes this sophisticated synthetic task, despite its relatively simple architecture, is unknown. Here we used in vitro patch-clamp recordings from acute slices of the anterior PC of mice to identify microcircuits involved in excitatory synaptic processing. Cluster analysis confirmed the presence of two prominent classes of glutamatergic principal cells in the main input layer (layer II) of the PC: semilunar (SL) cells and superficial pyramidal (SP) cells. SL cells received stronger afferent excitatory input from the olfactory bulb, on average, than did SP cells. This was due to the larger mean strength of single-fiber afferents onto SL cells. In contrast, SP cells received stronger associational (intracortical) excitatory inputs, most likely due to their more extensive dendritic trees within the associational layers. Tissue-cut experiments and dual recordings from SL and SP cells in disinhibited slices were consistent with the distinctive patterns of connectivity of these two cell classes. Our findings suggest that the anterior PC employs at least two layers of excitatory synaptic processing: one involving strong afferent inputs onto SL cells, and another involving strong intracortical inputs onto SP cells. This architecture may allow the PC to sequentially process olfactory information within segregated subcircuits.

摘要

初级嗅觉(或梨状)皮层是三层的古皮层,据认为它可以从嗅球识别的气味成分中构建统一的“气味图像”。梨状皮层(PC)如何在其相对简单的结构下完成这种复杂的综合任务尚不清楚。在这里,我们使用来自小鼠前 PC 急性切片的体外膜片钳记录来鉴定参与兴奋性突触处理的微电路。聚类分析证实,PC 的主要输入层(第 II 层)中存在两种突出的谷氨酸能主细胞:半月形(SL)细胞和浅层金字塔(SP)细胞。与 SP 细胞相比,SL 细胞平均从嗅球接收更强的传入兴奋性输入。这是由于 SL 细胞上单个纤维传入的平均强度更大。相比之下,SP 细胞接收更强的关联(皮质内)兴奋性输入,这很可能是由于它们在关联层内的更广泛的树突。组织切割实验和在去抑制切片中从 SL 和 SP 细胞进行的双重记录与这两个细胞类别的独特连接模式一致。我们的发现表明,前 PC 至少采用两层兴奋性突触处理:一层涉及到 SL 细胞的强传入输入,另一层涉及到 SP 细胞的强皮质内输入。这种结构可能允许 PC 在分离的子电路中顺序处理嗅觉信息。

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