首页> 美国卫生研究院文献>Frontiers in Neural Circuits >Heterogeneity of Intrinsic and Synaptic Properties of Neurons in the Ventral and Dorsal Parts of the Ventral Nucleus of the Lateral Lemniscus
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Heterogeneity of Intrinsic and Synaptic Properties of Neurons in the Ventral and Dorsal Parts of the Ventral Nucleus of the Lateral Lemniscus

机译:侧耳菌核腹侧核的腹侧和背侧神经元内在和突触特性的异质性

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摘要

The ventral nucleus of the lateral lemniscus (VNLL) provides a major inhibitory projection to the inferior colliculus (IC). Neurons in the VNLL respond with various firing patterns and different temporal precision to acoustic stimulation. The present study investigates the underlying intrinsic and synaptic properties of various cell types in different regions of the VNLL, using in vitro electrophysiological recordings from acute brain slices of mice and immunohistochemistry. We show that the biophysical membrane properties and excitatory input characteristics differed between dorsal and ventral VNLL neurons. Neurons in the ventral VNLL displayed an onset-type firing pattern and little hyperpolarization-activated current (Ih). Stimulation of lemniscal inputs evoked a large all-or-none excitatory response similar to Calyx of Held synapses in neurons in the lateral part of the ventral VNLL. Neurons that were located within the fiber tract of the lateral lemniscus, received several and weak excitatory input fibers. In the dorsal VNLL onset-type and sustained firing neurons were intermingled. These neurons showed large Ih and were strongly immunopositive for the hyperpolarization-activated cyclic nucleotide-gated channel 1 (HCN1) subunit. Both neuron types received several excitatory inputs that were weaker and slower compared to ventrolateral VNLL neurons. Using a mouse model that expresses channelrhodopsin under the promotor of the vesicular GABA transporter (VGAT) suggests that dorsal and ventral neurons were inhibitory since they were all depolarized by light stimulation. The diverse membrane and input properties in dorsal and ventral VNLL neurons suggest differential roles of these neurons for sound processing.
机译:侧列鞭毛虫的腹核(VNLL)为下丘脑(IC)提供了主要的抑制投射。 VNLL中的神经元对声刺激的反应方式各不相同,且时间精度不同。本研究使用小鼠急性脑切片的体外电生理学记录和免疫组化技术,研究了VNLL不同区域中各种细胞类型的内在固有和突触特性。我们显示,背侧和腹侧VNLL神经元之间的生物物理膜特性和兴奋性输入特征有所不同。腹侧VNLL中的神经元表现出发作型放电模式,几乎没有超极化激活电流(Ih)。 lemniscal输入的刺激引起大型的全无响应,类似于腹侧VNLL外侧神经元的Held突触花萼。位于侧弯盘菌纤维束内的神经元接受了几根弱的兴奋性输入纤维。在背侧VNLL中,发作型神经元和持续放电神经元混杂在一起。这些神经元显示出较大的Ih,并且对超极化激活的环状核苷酸门控通道1(HCN1)亚基具有强烈的免疫阳性。与腹侧VNLL神经元相比,两种神经元类型均接受了一些较弱和较慢的兴奋性输入。使用在泡状GABA转运蛋白(VGAT)的启动子下表达通道视紫红质的小鼠模型表明,背侧和腹侧神经元均具有抑制作用,因为它们均被光刺激去极化。背侧和腹侧VNLL神经元的不同膜和输入特性表明,这些神经元在声音处理中的作用不同。

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