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Sensory-driven enhancement of calcium signals in individual Purkinje cell dendrites of awake mice.清醒小鼠单个浦肯野细胞树突中钙信号的感觉驱动增强。
Cell Rep. 2014 Mar 13;6(5):792-798. doi: 10.1016/j.celrep.2014.02.001. Epub 2014 Feb 27.
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Procedures for behavioral experiments in head-fixed mice.头部固定小鼠行为实验的程序。
PLoS One. 2014 Feb 10;9(2):e88678. doi: 10.1371/journal.pone.0088678. eCollection 2014.
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Precise control of movement kinematics by optogenetic inhibition of Purkinje cell activity.光遗传学抑制浦肯野细胞活性对运动运动学的精确控制。
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Axonal sprouting and formation of terminals in the adult cerebellum during associative motor learning.成年小脑在联想运动学习期间的轴突发芽和末端形成。
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Imaging neuronal populations in behaving rodents: paradigms for studying neural circuits underlying behavior in the mammalian cortex.在活动的啮齿动物中对神经元群体进行成像:研究哺乳动物皮层中行为相关神经回路的范例。
J Neurosci. 2013 Nov 6;33(45):17631-40. doi: 10.1523/JNEUROSCI.3255-13.2013.
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Genetic approaches to neural circuits in the mouse.遗传方法研究小鼠的神经回路。
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Adaptive timing of motor output in the mouse: the role of movement oscillations in eyelid conditioning.在小鼠中运动输出的自适应定时:运动振荡在眼睑条件反射中的作用。
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Effects of acute restraint stress on different components of memory as assessed by object-recognition and object-location tasks in mice.急性束缚应激对小鼠物体识别和物体定位任务不同记忆成分的影响。
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The head-fixed behaving rat--procedures and pitfalls.头部固定行为学实验大鼠——操作步骤与注意事项
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在头部固定的小鼠进行眨眼条件反射期间,运动学习的小脑依赖性表达。

Cerebellar-dependent expression of motor learning during eyeblink conditioning in head-fixed mice.

作者信息

Heiney Shane A, Wohl Margot P, Chettih Selmaan N, Ruffolo Luis I, Medina Javier F

机构信息

Psychology Department, University of Pennsylvania, Philadelphia, Pennsylvania 19104.

Psychology Department, University of Pennsylvania, Philadelphia, Pennsylvania 19104

出版信息

J Neurosci. 2014 Nov 5;34(45):14845-53. doi: 10.1523/JNEUROSCI.2820-14.2014.

DOI:10.1523/JNEUROSCI.2820-14.2014
PMID:25378152
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4220020/
Abstract

Eyeblink conditioning in restrained rabbits has served as an excellent model of cerebellar-dependent motor learning for many decades. In mice, the role of the cerebellum in eyeblink conditioning is less clear and remains controversial, partly because learning appears to engage fear-related circuits and lesions of the cerebellum do not abolish the learned behavior completely. Furthermore, experiments in mice are performed using freely moving systems, which lack the stability necessary for mapping out the essential neural circuitry with electrophysiological approaches. We have developed a novel apparatus for eyeblink conditioning in head-fixed mice. Here, we show that the performance of mice in our apparatus is excellent and that the learned behavior displays two hallmark features of cerebellar-dependent eyeblink conditioning in rabbits: (1) gradual acquisition; and (2) adaptive timing of conditioned movements. Furthermore, we use a combination of pharmacological inactivation, electrical stimulation, single-unit recordings, and targeted microlesions to demonstrate that the learned behavior is completely dependent on the cerebellum and to pinpoint the exact location in the deep cerebellar nuclei that is necessary. Our results pave the way for using eyeblink conditioning in head-fixed mice as a platform for applying next-generation genetic tools to address molecular and circuit-level questions about cerebellar function in health and disease.

摘要

几十年来,约束状态下兔子的眨眼条件反射一直是小脑依赖性运动学习的优秀模型。在小鼠中,小脑在眨眼条件反射中的作用尚不清楚且仍存在争议,部分原因是学习似乎涉及与恐惧相关的神经回路,并且小脑损伤并不会完全消除已习得的行为。此外,小鼠实验是在自由活动系统中进行的,而这种系统缺乏用神经电生理学方法描绘基本神经回路所需的稳定性。我们开发了一种用于头部固定小鼠眨眼条件反射的新型装置。在此,我们表明小鼠在我们的装置中的表现出色,并且习得的行为表现出兔子小脑依赖性眨眼条件反射的两个标志性特征:(1)逐渐习得;(2)条件性运动的适应性定时。此外,我们结合使用药理学失活、电刺激、单单位记录和靶向微损伤来证明习得的行为完全依赖于小脑,并精确确定小脑深部核团中必需的确切位置。我们的结果为将头部固定小鼠的眨眼条件反射用作应用下一代遗传工具的平台铺平了道路,以解决关于健康和疾病中小脑功能的分子和神经回路水平问题。