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鸽子(Columba livia)嗅觉系统的端脑组织。

Telencephalic organization of the olfactory system in homing pigeons (Columba livia).

机构信息

Biopsychology, Faculty of Psychology, Institute of Cognitive Neuroscience, Ruhr-University Bochum, Universitätsstr 150, 44780 Bochum, Germany.

出版信息

Neuroscience. 2011 Oct 27;194:53-61. doi: 10.1016/j.neuroscience.2011.08.001. Epub 2011 Aug 5.

Abstract

Pigeons use olfactory cues to navigate over unfamiliar areas, and any impairment of the olfactory system generates remarkable reduction of homing performance. Lesion and deprivation studies suggest a critical involvement of the right nostril and thus, the right olfactory bulb (OB) and the left piriform cortex (CPi) for initial orientation. This functional pattern suggests that OB and CPi are asymmetrically connected with a stronger projection from the right OB to the left CPi. However, the structural organization of the olfactory system is not unequivocally clarified yet. Thus, we re-analyzed the system by antero- and retrograde tract tracing with biotinylated dextran amine and choleratoxin subunit B, and we especially evaluated quantitative differences in the number of cells in the OB innervating the left and right CPi. Our anterograde tracing data verified a strong bilateral input to the CPi, and the prepiriform cortex (CPP), as well as small projections to the ipsilateral medial septum and the dorsolateral corticoid area and the nucleus taeniae of the amygdala in both hemispheres. Apart from the bilateral bulbar afferents, CPi in turn receives unequivocal input from the ipsilateral CPP, hyperpallium densocellulare, dorsal arcopallium, and from a cluster of cells located within the frontolateral nidopallium. Thus, an indirect connection between OB and CPi is only mediated by the CPP. For quantitative analysis of bulbar input to the CPi, we counted the number of ipsi- and contralaterally projecting neurons located in the OB after injections into the left or right CPi. Retrogradely labeled cells were found bilaterally in the OB with a higher number of ipsilaterally located cells. The bilaterality index did not differ after left- or right-sided CPi injections indicating that the functional lateralization of the olfactory system is not simply based on differences in the number of projecting axons of the major processing stream.

摘要

鸽子利用嗅觉线索在不熟悉的区域导航,嗅觉系统的任何损伤都会导致归巢性能显著下降。损伤和剥夺研究表明,右鼻孔及其右嗅球(OB)和左梨状皮层(CPi)对初始定向有重要作用。这种功能模式表明,OB 和 CPi 之间存在不对称连接,来自右 OB 的投射更强地投射到左 CPi。然而,嗅觉系统的结构组织尚未得到明确澄清。因此,我们使用生物素化葡聚糖胺和霍乱毒素亚单位 B 进行顺行和逆行轨迹追踪,重新分析了该系统,特别是评估了支配左、右 CPi 的 OB 中的细胞数量的定量差异。我们的顺行示踪数据证实了 CPi 和前梨状皮层(CPP)的强烈双侧输入,以及双侧内侧隔核、背外侧皮质区和杏仁核的尾核的小投射。除了双侧球部传入外,CPi 还接收来自同侧 CPP、高密度后梨状皮层、背弓状皮质和位于前外侧 nidopallium 内的细胞簇的明确输入。因此,OB 和 CPi 之间的间接连接仅通过 CPP 介导。为了定量分析 CPi 的球部输入,我们在将 CPi 注射到左或右 CPi 后,计算位于 OB 中的同侧和对侧投射神经元的数量。在 OB 中发现双侧逆行标记细胞,同侧细胞数量较多。左右 CPi 注射后,双侧性指数无差异,表明嗅觉系统的功能偏侧化并非简单基于主要处理流的投射轴突数量的差异。

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