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Connections of the Superior Paraolivary Nucleus of the Rat: II. Reciprocal Connections with the Tectal Longitudinal Column

机译:大鼠上颌旁核的连接:II。与直肠纵柱的相互连接

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摘要

The superior paraolivary nucleus (SPON), a prominent GABAergic center of the mammalian auditory brainstem, projects to the ipsilateral inferior colliculus (IC) and sends axons through the commissure of the IC (CoIC). Herein we demonstrate that the SPON is reciprocally connected with the recently discovered tectal longitudinal column (TLC). The TLC is a long and narrow structure that spans nearly the entire midbrain tectum longitudinally, immediately above the periaqueductal gray matter (PAG) and very close to the midline. Unilateral injections of biotinylated dextran into the SPON of the rat label abundant terminal fibers in the TLC of both sides, with an ipsilateral predominance. The SPON provides a dense innervation of the entire rostrocaudal extent of the ipsilateral TLC, and a relatively sparser innervation of the caudal and rostral portions of the contralateral TLC. SPON fibers reach the TLC by two routes: as collaterals of axons of the CoIC, and as axons that circumvent the ipsilateral IC before traveling in the deep layers of the superior colliculus (SC). The density of these projections identifies SPON as a significant source of input to the TLC. Other targets of the SPON discovered in this study include the deep layers of the SC and the PAG. The same experiments reveal numerous labeled cell bodies in the TLC, interspersed among the labeled SPON fibers. This observation suggests that the SPON is a significant target of TLC projections. The discovery of novel reciprocal connections between the SPON and the TLC opens unexpected avenues for investigation of sound processing in mammalian brainstem circuits.
机译:上睑旁核(SPON)是哺乳动物听觉脑干的一个突出的GABA能中心,伸向同侧下丘脑(IC),并通过IC的连合处发送轴突(CoIC)。本文中,我们证明了SPON与最近发现的枕骨纵柱(TLC)相互连接。 TLC是一种细长的结构,其纵向几乎覆盖了整个中脑顶盖,位于导水管周围灰质(PAG)的正上方,非常靠近中线。将生物素化的葡聚糖单侧注射到大鼠的SPON中,可在两侧的TLC中标记丰富的末端纤维,并具有同侧优势。 SPON提供了同侧TLC整个轮状尾骨范围的密集神经支配,以及对侧TLC的尾部和延髓部的较稀疏神经支配。 SPON纤维通过两种途径到达TLC:作为CoIC轴突的侧枝,以及作为绕过同侧IC的轴突,然后在上丘(SC)的深层中传播。这些预测的密度确定SPON是TLC输入的重要来源。在这项研究中发现的SPON的其他目标还包括SC和PAG的深层。相同的实验揭示了TLC中众多标记的细胞体,散布在标记的SPON纤维之间。该观察结果表明,SPON是TLC投影的重要目标。 SPON和TLC之间新颖的相互联系的发现为研究哺乳动物脑干电路中的声音处理开辟了意想不到的途径。

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