Hearing Sciences, Mental Health and Clinical Neurosciences, School of Medicine, University of Nottingham, Nottingham, United Kingdom.
Medical Research Council Institute of Hearing Research, School of Medicine, University of Nottingham, Nottingham, United Kingdom.
Front Neural Circuits. 2021 Nov 1;15:721015. doi: 10.3389/fncir.2021.721015. eCollection 2021.
We reconstructed the intrinsic axons of 32 neurons in the guinea pig inferior colliculus (IC) following juxtacellular labeling. Biocytin was injected into cells , after first analyzing physiological response properties. Based on axonal morphology there were two classes of neuron: (1) laminar cells (14/32, 44%) with an intrinsic axon and flattened dendrites confined to a single fibrodendritic lamina and (2) translaminar cells (18/32, 56%) with axons that terminated in two or more laminae in the central nucleus (ICc) or the surrounding cortex. There was also one small, low-frequency cell with bushy-like dendrites that was very sensitive to interaural timing differences. The translaminar cells were subdivided into three groups of cells with: (a) stellate dendrites that crossed at least two laminae (8/32, 25%); (b) flattened dendrites confined to one lamina and that had mainly en passant axonal swellings (7/32, 22%) and (c) short, flattened dendrites and axons with distinctive clusters of large terminal boutons in the ICc (3/32, 9%). These terminal clusters were similar to those of cortical basket cells. The 14 laminar cells all had sustained responses apart from one offset response. Almost half the non-basket type translaminar cells (7/15) had onset responses while the others had sustained responses. The basket cells were the only ones to have short-latency (7-9 ms), chopper responses and this distinctive temporal response should allow them to be studied in more detail in future. This is the first description of basket cells in the auditory brainstem, but more work is required to confirm their neurotransmitter and precise post-synaptic targets.
我们通过细胞外标记重建了豚鼠下丘脑中 32 个神经元的固有轴突。在首次分析生理反应特性后,将生物胞素注入细胞。根据轴突形态,有两种类型的神经元:(1)层状细胞(14/32,44%),具有固有轴突和平坦树突,局限于单个纤维-树突层;(2)跨层细胞(18/32,56%),其轴突终止于中央核(ICc)或周围皮质中的两个或更多层。还有一个小的、低频细胞,具有类似丛状的树突,对两耳时差非常敏感。跨层细胞进一步细分为三组细胞:(a)具有至少两个层交叉的星状树突(8/32,25%);(b)局限于一个层的扁平树突,主要具有过路轴突膨体(7/32,22%);(c)短而扁平的树突和轴突,在 ICc 中具有独特的大终末球簇(3/32,9%)。这些终末簇与皮质篮状细胞相似。除了一个偏移反应外,所有 14 个层状细胞均具有持续反应。几乎一半的非篮状跨层细胞(7/15)具有起始反应,而其他细胞具有持续反应。只有篮状细胞具有短潜伏期(7-9ms)、调幅反应,这种独特的时间反应应该使它们能够在未来得到更详细的研究。这是听觉脑干中篮状细胞的首次描述,但需要更多的工作来确认它们的神经递质和精确的突触后靶点。