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A technique for stereotaxic recordings of neuronal activity in awake, head-restrained mice.

机译:在清醒,头部受限的小鼠中神经元活动的立体定位记录技术。

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Neurophysiological recordings of brain activity during behavior in awake animals have traditionally been performed in primates because of their evolutionary close relationship to humans and comparable behavioral skills. However, with properly designed behavioral tasks, many fundamental questions about how the brain controls behavior can also be addressed in small rodents. Today, the rapid progress in mouse neurogenetics, including the development of mouse models of human brain disorders, provides unique and unparalleled opportunities for the investigation of normal and pathological brain function. The development of experimental procedures for the recording of neuronal activity in awake and behaving mice is an important and necessary step towards neurophysiological investigation of normal and pathological mouse brain function. Here we describe a method for stereotaxic recordings of neuronal activity from head-restrained mice during fluid licking. Fluid licking is a natural and spontaneous behavior in rodents, which mice readily perform under head-restrained conditions. Using a head-restrained preparation allows recordings of well-isolated single units at multiple sites during repeated experimental sessions. Thus, a large number of neurons can be tested for their relationship with behavior and detailed spatial maps of behavior related neuronal activity can be generated as exemplified here with recordings from lick-related Purkinje cells in the cerebellum.
机译:传统上,清醒动物在行为过程中大脑活动的神经生理学记录是在灵长类动物中进行的,因为它们与人类的进化密切相关,并且具有类似的行为技能。但是,通过正确设计行为任务,在小型啮齿动物中也可以解决许多有关大脑如何控制行为的基本问题。如今,小鼠神经遗传学的迅速发展,包括人类脑部疾病小鼠模型的发展,为研究正常和病理性脑功能提供了独特而无与伦比的机会。记录清醒和举止小鼠神经元活性的实验程序的发展是迈向正常和病理性小鼠脑功能神经生理学研究的重要和必要步骤。在这里,我们描述了一种在流体舔过程中从头部受约束的小鼠中神经元活动的立体定位记录的方法。液体舔是啮齿动物的一种自然和自发的行为,老鼠容易在头部约束条件下表现出这种行为。使用头部受限的制剂可以在重复的实验过程中在多个位置记录完全隔离的单个单元。因此,可以测试大量神经元与行为的关系,并且可以生成行为相关的神经元活动的详细空间图,如此处示例的,记录的是小脑中与舔相关的浦肯野细胞的记录。

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