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Monosynaptic convergence of chorda tympani and glossopharyngeal afferents onto ascending relay neurons in the nucleus of the solitary tract: A high-resolution confocal and correlative electron microscopy approach

机译:鼓膜鼓膜和舌咽传入神经在单束核中的上升中继神经元上的单突触收敛:一种高分辨率的共聚焦和相关电子显微镜方法

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摘要

While physiological studies suggested convergence of chorda tympani and glossopharyngeal afferent axons onto single neurons of the rostral nucleus of the solitary tract (rNTS), anatomical evidence has been elusive. The current study uses high-magnification confocal microscopy to identify putative synaptic contacts from afferent fibers of the two nerves onto individual projection neurons. Imaged tissue is re-visualized with electron microscopy, confirming that overlapping fluorescent signals in confocal z-stacks accurately identify appositions between labeled terminal and dendrite pairs. Monte Carlo modeling reveals that the probability of overlapping fluorophores is stochastically unrelated to the density of afferent label suggesting that convergent innervation in the rNTS is selective rather than opportunistic. Putative synaptic contacts from each nerve are often compartmentalized onto dendrite segments of convergently innervated neurons. These results have important implications for orosensory processing in the rNTS, and the techniques presented here have applications in investigations of neural microcircuitry with an emphasis on innervation patterning.
机译:虽然生理研究表明鼓膜鼓膜和舌咽传入轴突会聚在孤立道的喙状核(rNTS)的单个神经元上,但解剖学证据却难以捉摸。当前的研究使用高放大倍数共聚焦显微镜来确定假定的突触接触,从两个神经的传入纤维到单个投射神经元。用电子显微镜对成像的组织进行重新可视化,确认共焦z堆栈中重叠的荧光信号可准确识别标记的末端和枝晶对之间的位置。蒙特卡洛模型揭示,荧光团重叠的概率与传入标记的密度随机无关,这表明rNTS中的收敛神经支配是选择性的,而不是机会性的。来自每条神经的假定的突触接触经常被分隔到会聚神经支配的神经元的树突段上。这些结果对rNTS中的口感处理具有重要意义,此处介绍的技术已在神经微电路研究中得到了应用,重点是神经支配模式。

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