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CBA/CaH 小鼠外侧丘系核至下丘的双侧对称甘氨酸能和谷氨酸能投射。

Bilateral and symmetric glycinergic and glutamatergic projections from the LSO to the IC in the CBA/CaH mouse.

机构信息

Garvan Institute of Medical Research, Darlinghurst, NSW, Australia.

School of Medical Sciences, University of New South Wales, Kensington, NSW, Australia.

出版信息

Front Neural Circuits. 2024 Aug 9;18:1430598. doi: 10.3389/fncir.2024.1430598. eCollection 2024.

Abstract

Auditory space has been conceptualized as a matrix of systematically arranged combinations of binaural disparity cues that arise in the superior olivary complex (SOC). The computational code for interaural time and intensity differences utilizes excitatory and inhibitory projections that converge in the inferior colliculus (IC). The challenge is to determine the neural circuits underlying this convergence and to model how the binaural cues encode location. It has been shown that midbrain neurons are largely excited by sound from the contralateral ear and inhibited by sound leading at the ipsilateral ear. In this context, ascending projections from the lateral superior olive (LSO) to the IC have been reported to be ipsilaterally glycinergic and contralaterally glutamatergic. This study used CBA/CaH mice (3-6 months old) and applied unilateral retrograde tracing techniques into the IC in conjunction with immunocytochemical methods with glycine and glutamate transporters (GlyT2 and vGLUT2, respectively) to analyze the projection patterns from the LSO to the IC. Glycinergic and glutamatergic neurons were spatially intermixed within the LSO, and both types projected to the IC. For GlyT2 and vGLUT2 neurons, the average percentage of ipsilaterally and contralaterally projecting cells was similar (ANOVA, ). A roughly equal number of GlyT2 and vGLUT2 neurons did not project to the IC. The somatic size and shape of these neurons match the descriptions of LSO principal cells. A minor but distinct population of small (< 40 μm) neurons that labeled for GlyT2 did not project to the IC; these cells emerge as candidates for inhibitory local circuit neurons. Our findings indicate a symmetric and bilateral projection of glycine and glutamate neurons from the LSO to the IC. The differences between our results and those from previous studies suggest that species and habitat differences have a significant role in mechanisms of binaural processing and highlight the importance of research methods and comparative neuroscience. These data will be important for modeling how excitatory and inhibitory systems converge to create auditory space in the CBA/CaH mouse.

摘要

听觉空间被概念化为在 SuperiorOlivaryComplex(SOC)中出现的双耳差异线索的系统排列组合的矩阵。用于处理耳间时间和强度差异的计算代码利用了在 InferiorColliculus(IC)中汇聚的兴奋性和抑制性投射。挑战在于确定这种收敛的神经回路,并建模双耳线索如何编码位置。已经表明,中脑神经元主要被来自对侧耳朵的声音激发,而被来自同侧耳朵的领先声音抑制。在这种情况下,据报道,来自 lateralSuperiorOlive(LSO)的上行投射到 IC 是同侧甘氨酸能的,对侧谷氨酸能的。本研究使用 CBA/CaH 小鼠(3-6 个月大),并应用单侧逆行示踪技术到 IC,结合甘氨酸和谷氨酸转运体(GlyT2 和 vGLUT2,分别)的免疫细胞化学方法,分析来自 LSO 到 IC 的投射模式。LSO 内的甘氨酸能和谷氨酸能神经元在空间上混合,并且两种类型都投射到 IC。对于 GlyT2 和 vGLUT2 神经元,同侧和对侧投射细胞的平均百分比相似(ANOVA,)。大约相同数量的 GlyT2 和 vGLUT2 神经元不投射到 IC。这些神经元的体细胞大小和形状与 LSO 主要细胞的描述相匹配。一小部分但明显的小(<40μm)神经元,标记为 GlyT2,不投射到 IC;这些细胞可能是抑制性局部回路神经元的候选者。我们的发现表明 LSO 到 IC 的甘氨酸和谷氨酸神经元的对称和双侧投射。我们的结果与以前的研究结果之间的差异表明,物种和栖息地差异在双耳处理机制中起着重要作用,并强调了研究方法和比较神经科学的重要性。这些数据对于建模 CBA/CaH 小鼠中兴奋性和抑制性系统如何收敛以创建听觉空间将非常重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9169/11341401/b6098a3269f2/fncir-18-1430598-g001.jpg

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