首页> 美国卫生研究院文献>Journal of Neurophysiology >Methods to Understand Brain Connections and Neural Function: High-resolution and cell-type-specific photostimulation mapping shows weak excitatory vs. strong inhibitory inputs in the bed nucleus of the stria terminalis
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Methods to Understand Brain Connections and Neural Function: High-resolution and cell-type-specific photostimulation mapping shows weak excitatory vs. strong inhibitory inputs in the bed nucleus of the stria terminalis

机译:理解大脑连接和神经功能的方法:高分辨率和特定于细胞类型的光刺激图谱显示纹状体终末床核的兴奋性输入与抑制性输入弱

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摘要

The bed nucleus of the stria terminalis (BNST) is a key component of the extended amygdala and has been implicated in anxiety and addiction. As individual neurons function within neural circuits, it is important to understand local microcircuits and larger network connections of identified neuronal types and understand how maladaptive changes in the BNST neural networks are induced by stress and drug abuse. However, due to limitations of classic anatomical and physiological methods, the local circuit organization of synaptic inputs to specific BNST neuron types is not well understood. In this study, we report on the application of high-resolution and cell-type-specific photostimulation methodology developed in our laboratory to local circuit mapping in the BNST. Under calibrated experimental conditions, laser photostimulation via glutamate uncaging or channelrhodopsin-2 photoactivation evokes spiking of BNST neurons perisomatically, without activating spikes from axons of passage or distal dendrites. Whole cell recordings, combined with spatially restricted photostimulation of presynaptic neurons at many different locations over a large region, allow high-resolution mapping of presynaptic input sources to single recorded neurons in the BNST. We constructed maps of synaptic inputs impinging onto corticotrophin-releasing hormone-expressing (CRH+) BNST neurons in the dorsolateral BNST and found that the CRH+ neurons receive predominant local inhibitory synaptic connections with very weak excitatory connections. Through cell-type-specific optogenetic stimulation mapping, we generated maps of somatostatin-expressing neuron-specific inhibitory inputs to BNST neurons. Taken together, the photostimulation-based techniques offer us powerful tools for determining the functional organization of local circuits of specific BNST neuron types.
机译:终末纹(BNST)的床核是扩展杏仁核的关键组成部分,已与焦虑和成瘾有关。由于单个神经元在神经回路中起作用,因此重要的是了解局部微回路和已识别神经元类型的较大网络连接,并了解压力和药物滥用如何在BNST神经网络中引起适应不良性变化。但是,由于经典的解剖学和生理学方法的局限性,对于特定BNST神经元类型的突触输入的局部回路组织还没有很好地理解。在这项研究中,我们报告了在我们的实验室中开发的高分辨率和特定于细胞类型的光刺激方法在BNST中局部电路图的应用。在校准的实验条件下,通过谷氨酸解笼或Channelrhodopsin-2光激活进行的激光光刺激会引起BNST神经元的过激峰,而不会激活来自轴突或远端树突的刺突。全细胞记录与在大区域内许多不同位置的突触前神经元的空间受限光刺激相结合,可以将突触前输入源高分辨率映射到BNST中的单个记录神经元。我们构建了撞击背外侧BNST中促肾上腺皮质激素释放激素表达(CRH +)BNST神经元的突触输入图,并发现CRH +神经元主要接收局部抑制性突触连接,兴奋性连接非常弱。通过细胞类型特定的光遗传学刺激图谱,我们生成了生长抑素表达神经元特异性抑制输入到BNST神经元的图谱。总之,基于光刺激的技术为我们提供了确定特定BNST神经元类型的局部电路功能组织的强大工具。

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