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Divergent and point-to-point connections in the commissural pathway between the inferior colliculi

机译:下丘之间合路中的发散和点对点连接

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摘要

The commissure of the inferior colliculus interconnects the left and right sides of the auditory midbrain and provides the final opportunity for interaction between the two sides of the auditory pathway at the subcortical level. Although the functional properties of the commissure are beginning to be revealed, the topographical organization of its connections is unknown. A combination of neuroanatomical tracing studies, 3D reconstruction, and neuronal density maps was used to study the commissural connections in rat. The results demonstrate that commissural neurons in the central nucleus of the inferior colliculus send a divergent projection to the equivalent frequency-band laminae in the central nucleus and dorsal and lateral cortices on the opposite side. The density of this projection, however, is weighted toward a point that matches the position of the tracer injection; consistent with a point-to-point emphasis in the wiring pattern. In the dorsal cortex of the inferior colliculus there may be two populations of neurons that project across the commissure, one projecting exclusively to the frequency-band laminae in the central nucleus and the other projecting diffusely to the dorsal cortex. Neurons in the lateral cortex of the inferior colliculus make only a very weak contribution to the commissural pathway. The point-to-point pattern of connections permits interactions between specific regions of corresponding frequency-band laminae, whereas the divergent projection pattern could subserve integration across the lamina. J. Comp. Neurol. 514:226–239, 2009. © 2009 Wiley-Liss, Inc.
机译:下丘的连合使听觉中脑的左侧和右侧相互连接,并为皮层下水平的听觉通道的两侧之间的相互作用提供了最终的机会。尽管连合体的功能特性开始被揭示,但其连接的地形组织却是未知的。神经解剖学追踪研究,3D重建和神经元密度图的组合被用于研究大鼠的连合连接。结果表明,下丘脑中央核中的连合神经元向中心核中的等效频带层以及相对侧的背侧和外侧皮层发送了不同的投影。但是,此投影的密度朝着与示踪剂注入位置匹配的点加权;与布线模式中点对点的强调一致。在下丘的背皮质中,可能有两个神经元群体穿过连合体突出,一个只向中央核的频带层突出,而另一个则扩散到背侧皮质。下结肠外侧皮质的神经元对连合途径的贡献很小。连接的点对点模式允许在相应的频带薄片的特定区域之间进行交互,而发散的投影模式可以促进整个薄片的集成。 J.比较神经元。 514:226–239,2009年。©2009 Wiley-Liss,Inc.

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