首页> 外文期刊>The Journal of Comparative Neurology >Axonal pathways to the lateral superior olive labeled with biotinylated dextran amine injections in the dorsal cochlear nucleus of rats.
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Axonal pathways to the lateral superior olive labeled with biotinylated dextran amine injections in the dorsal cochlear nucleus of rats.

机译:大鼠背侧耳蜗核中标记有生物素化葡聚糖胺注射液标记的外侧上橄榄的轴突途径。

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The lateral superior olive (LSO) contains cells that are sensitive to intensity differences between the two ears, a feature used by the brain to localize sounds in space. This report describes a source of input to the LSO that complements bushy cell projections from the ventral cochlear nucleus (VCN). Injections of biotinylated dextran amine (BDA) into the dorsal cochlear nucleus (DCN) of the rat label axons and swellings in several brainstem structures, including the ipsilateral LSO. Labeling in the ipsilateral LSO was confined to a thin band that extended throughout the length of the structure such that it resembled an LSO isofrequency lamina. The source of this labeled pathway was not obvious, because DCN neurons do not project to the LSO, and VCN bushy cells were not filled by these injections. Filled neurons in several brainstem structures emerged as possible sources. Three observations suggest that most of the axonal labeling in the LSO derives from a single source. First, the number of labeled VCN planar multipolar cells and the amount of labeling in the LSO were consistent and robust across animals. In contrast, the number of labeled cells in most other structures was small and highly variable. Second, the locations of planar cells and filled axons in the LSO were related topographically to the position of the DCN injection site. Third, labeled terminal arborizations in the LSO arose from collaterals of axons in the trapezoid body (output tract of planar cells). We infer that planar multipolar cells, in addition to bushy cells, are a source of ascending input from the cochlear nucleus to the LSO. J. Comp. Neurol. 461:452-465, 2003.
机译:外侧上橄榄(LSO)包含对两只耳朵之间的强度差异敏感的细胞,这是大脑用来在空间中定位声音的功能。该报告描述了LSO的输入源,该输入源补充了来自腹侧耳蜗核(VCN)的浓密细胞投射。将生物素化的右旋糖酐胺(BDA)注射到大鼠的背侧耳蜗核(DCN)中,可在包括同侧LSO在内的多个脑干结构中标记轴突和肿胀。同侧LSO中的标记被限制在一条细带上,该细带在结构的整个长度上延伸,使其类似于LSO等频薄片。该标记途径的来源不明显,因为DCN神经元未突出到LSO,并且这些注射未填充VCN丛生细胞。出现在几个脑干结构中的神经元是可能的来源。三个观察结果表明,LSO中的大多数轴突标记来自单一来源。首先,标记的VCN平面多极细胞的数量和LSO中标记的数量在动物之间是一致且稳健的。相反,大多数其他结构中的标记细胞数量很少且变化很大。其次,LSO中平面细胞和填充轴突的位置在地形上与DCN注射部位的位置相关。第三,LSO中标记的末端乔木来自梯形体(平面细胞的输出通道)中轴突的侧支。我们推断,除了丛生细胞外,平面多极细胞也是从耳蜗核向LSO递增输入的来源。 J.比较神经元。 461:452-465,2003。

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