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雪貂嗅球与基底嗅脑的连接:诱发电位及神经解剖学研究

Olfactory bulb connections with basal rhinencephalon in the ferret: an evoked potential and neuroanatomical study.

作者信息

Dennis B J, Kerr D I

出版信息

J Comp Neurol. 1975 Jan 1;159(1):129-48. doi: 10.1002/cne.901590108.

Abstract

The lateral olfactory tract (LOT) of the ferret has been shown to project to most of the pyriform lobe, as in the cat. Only a small medio-posterior region of the pyriform cortex (the angular cortex), which has a distinctly different appearance in Nissl stained sections, proves to be devoid of olfactory connections. Despite the fact that sub-areas can be recognized within olfactory cortex, there is an underlying constancy in design throughout. Latency measurements indicate that fine collateral branches of theLOT reach the posterior olfactory cortex, whereas mainly larger diameter (faster conducting) fibres comprise the contribution to anterior olfactory cortex. Thus in the present context it is sufficient to recognise just an anterior and posterior subdivisionof olfactory cortex, contingent on the above criterion and correlated with cytoarchitectural features, chiefly variations in cortical layers II and III of the regions concerned. Pyriform cortex directly in receipt of LOT fibres, and associated deeper cortical zones, generated potentials in the olfactory bulbs which can only be attributed to centrifugal input, thus further substantiating an olfactory role for this cortex. In addition, non-cortical regions in receipt of LOT fibres, namely the anterior olfactory nucleus, olfactory tubercle, cortical amygdaloid nucleus and nucleus of the lateral olfactory tract, also contribute centrifugal input to the bulbs. All these regions are thereby capable of providing a rather direct feedback on olfactory bulb activity. The exact pathways concerned have yet to be determined.

摘要

雪貂的外侧嗅束(LOT)已被证明投射到梨状叶的大部分区域,就像在猫中一样。梨状皮质中只有一个小的中后区域(角皮质),在尼氏染色切片中外观明显不同,结果证明没有嗅觉连接。尽管在嗅觉皮质内可以识别出亚区域,但整体设计存在潜在的一致性。潜伏期测量表明,LOT的细侧支到达后嗅觉皮质,而主要是较大直径(传导速度更快)的纤维对前嗅觉皮质有贡献。因此,在当前背景下,仅根据上述标准并与细胞结构特征相关,主要是相关区域皮质II层和III层的变化,识别出嗅觉皮质的前后细分就足够了。直接接收LOT纤维的梨状皮质以及相关的更深皮质区域,在嗅球中产生的电位只能归因于离心输入,从而进一步证实了该皮质的嗅觉作用。此外,接收LOT纤维的非皮质区域,即前嗅核、嗅结节、皮质杏仁核和外侧嗅束核,也对嗅球有离心输入贡献。因此,所有这些区域都能够对嗅球活动提供相当直接的反馈。具体涉及的途径尚未确定。

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