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首页> 外文期刊>Brain and Behavior >Organization of projection from brainstem auditory nuclei to the inferior colliculus of Japanese house bat ( Pipistrellus abramus )
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Organization of projection from brainstem auditory nuclei to the inferior colliculus of Japanese house bat ( Pipistrellus abramus )

机译:从脑干听觉核到日本家蝠(Pipistrellus abramus)下下丘的投射的组织

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Objectives Echolocating bats show remarkable specialization which is related to analysis of echoes of biosonars in subcortical auditory brainstem pathways. The inferior colliculus (IC) receives inputs from all lower brainstem auditory nuclei, i.e., cochlear nuclei, nuclei of the lateral lemniscus, and superior olivary complex, and create de novo responses to sound, which is considered crucial for echolocation. Inside the central nucleus of the IC (ICC), small domains which receive specific combination of extrinsic inputs are the basis of integration of sound information. In addition to extrinsic inputs, each domain is interconnected by local IC neurons but the cell types related to the interconnection are not well‐understood. The primary objective of the current study is to examine whether the ascending inputs are reorganized and terminate in microdomains inside the ICC. Methods We made injection of a retrograde tracer into different parts of the ICC, and analyzed distribution of retrogradely labeled cells in the auditory brainstem of Japanese house bat ( Pipistrellus abramus ). Results Pattern of ascending projections from brainstem nuclei was similar to other bat species. Percentages of labeled cells in several nuclei were correlated each other. Furthermore, within the IC, we identified that large GABAergic (LG) and glutamatergic neurons made long‐range connection. Conclusions Synaptic organization of IC of Japanese house bat shows specialization which is likely to relate for echolocation. Input nuclei to the IC make clusters which terminate in specific part of the ICC, implying the presence of microdomains. LG neurons have roles for binding IC microdomains.
机译:目的蝙蝠的回声显示出显着的专业性,这与皮层下听觉脑干通路中生物声纳回声的分析有关。下丘脑(IC)接收来自所有下脑干听觉核(即耳蜗核,外侧弯鞭状核和上橄榄叶复合体)的输入,并产生对声音的从头反应,这被认为对回声定位至关重要。在IC(ICC)的中心核内,接收外部输入特定组合的小区域是声音信息集成的基础。除了外部输入外,每个域都通过局部IC神经元相互连接,但是与互连相关的细胞类型却未被很好地理解。当前研究的主要目的是检查升序输入是否被重组并终止于ICC内部的微域中。方法我们向ICC的不同部位注射了逆行示踪剂,并分析了逆转录标记的细胞在日本蝙蝠(Pipistrellus abramus)的听觉脑干中的分布。结果脑干核的上升投射模式与其他蝙蝠相似。几个细胞核中标记细胞的百分比相互关联。此外,在IC中,我们确定大型GABA能(LG)和谷氨酸能神经元建立了长距离连接。结论日本房蝙蝠IC的突触组织显示其专业性,这可能与回声定位有关。 IC的输入核形成簇,簇终止于ICC的特定部分,暗示存在微区。 LG神经元具有绑定IC微域的作用。

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