Institute for Zoology, University of Veterinary Medicine Foundation, Hannover, Buenteweg 17, 30559, Hannover, Germany.
Sci Rep. 2023 Aug 30;13(1):14182. doi: 10.1038/s41598-023-41180-8.
The lateral lemniscus encompasses processing stages for binaural hearing, suppressing spurious frequencies and frequency integration. Within the lemniscal fibres three nuclei can be identified, termed after their location as dorsal, intermediate and ventral nucleus of the lateral lemniscus (DNLL, INLL and VNLL). While the DNLL and VNLL have been functionally and anatomically characterized, less is known about INLL neurons. Here, we quantitatively describe the morphology, the cellular orientation and distribution of synaptic contact sites along dendrites in mature Mongolian gerbils. INLL neurons are largely non-inhibitory and morphologically heterogeneous with an overall perpendicular orientation regarding the lemniscal fibers. Dendritic ranges are heterogeneous and can extend beyond the nucleus border. INLL neurons receive VGluT1/2 containing glutamatergic and a mix of GABA- and glycinergic inputs distributed over the entire dendrite. Input counts suggest that numbers of excitatory exceed the inhibitory contact sites. Axonal projections indicate connectivity to ascending and descending auditory structures. Our data show that INLL neurons form a morphologically heterogeneous continuum and incoming auditory information is processed on thin dendrites of various length and biased to perpendicular orientation. Together with the different axonal projection patterns, this indicates that the INLL is a highly complex structure that might hold many unexplored auditory functions.
外侧丘系包含了双耳听觉的处理阶段,抑制虚假频率和频率整合。在丘系纤维内可以识别出三个核,根据其位置分别命名为外侧丘系的背核、中间核和腹核(DNLL、INLL 和 VNLL)。虽然 DNLL 和 VNLL 在功能和解剖学上已经得到了描述,但关于 INLL 神经元的了解较少。在这里,我们定量描述了成熟蒙古沙鼠的形态、细胞方向和树突上突触接触点的分布。INLL 神经元主要是非抑制性的,形态上具有异质性,与丘系纤维总体上呈垂直方向。树突范围具有异质性,可以延伸到核边界之外。INLL 神经元接收含有 VGluT1/2 的谷氨酸能和 GABA 和甘氨酸能混合输入,分布在整个树突上。输入计数表明兴奋性输入的数量超过抑制性接触点。轴突投射表明与上行和下行听觉结构的连接。我们的数据表明,INLL 神经元形成了一个形态上具有异质性的连续体,传入的听觉信息在各种长度和偏向垂直方向的薄树突上进行处理。结合不同的轴突投射模式,这表明 INLL 是一个高度复杂的结构,可能具有许多尚未探索的听觉功能。