首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Juxtacellular Monitoring and Localization of Single Neurons within Sub-cortical Brain Structures of Alert Head-restrained Rats
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Juxtacellular Monitoring and Localization of Single Neurons within Sub-cortical Brain Structures of Alert Head-restrained Rats

机译:机敏的头部受约束的大鼠皮层下大脑结构内单个神经元的近细胞监测和定位

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摘要

There are a variety of techniques to monitor extracellular activity of single neuronal units. However, monitoring this activity from deep brain structures in behaving animals remains a technical challenge, especially if the structures must be targeted stereotaxically. This protocol describes convenient surgical and electrophysiological techniques that maintain the animal’s head in the stereotaxic plane and unambiguously isolate the spiking activity of single neurons. The protocol combines head restraint of alert rodents, juxtacellular monitoring with micropipette electrodes, and iontophoretic dye injection to identify the neuron location in post-hoc histology. While each of these techniques is in itself well-established, the protocol focuses on the specifics of their combined use in a single experiment. These neurophysiological and neuroanatomical techniques are combined with behavioral monitoring. In the present example, the combined techniques are used to determine how self-generated vibrissa movements are encoded in the activity of neurons within the somatosensory thalamus. More generally, it is straightforward to adapt this protocol to monitor neuronal activity in conjunction with a variety of behavioral tasks in rats, mice, and other animals. Critically, the combination of these methods allows the experimenter to directly relate anatomically-identified neurophysiological signals to behavior.
机译:有多种技术可以监视单个神经元单元的细胞外活性。但是,从行为动物的深部大脑结构监视此活动仍然是一项技术挑战,尤其是如果必须立体定向目标结构时。该协议描述了方便的外科手术和电生理技术,可将动物的头部保持在立体定向平面上,并明确隔离单个神经元的突波活动。该协议结合了警惕性啮齿动物的头部保护,用微量移液器电极进行的近细胞监测以及离子电渗疗法的染料注入,以识别事后组织学中的神经元位置。虽然这些技术中的每一种本身都已经很完善,但该协议着重于在单个实验中组合使用它们的细节。这些神经生理学和神经解剖学技术与行为监测相结合。在本示例中,组合技术用于确定如何在体感丘脑内的神经元活动中编码自我生成的触须运动。更一般而言,直接修改此协议以结合大鼠,小鼠和其他动物的各种行为任务来监控神经元活动。至关重要的是,这些方法的组合使实验者可以将解剖学识别的神经生理信号直接与行为相关联。

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