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中文摘要
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描述(由申请人提供):本提案的目的是研究突触可塑性的发育调节和感觉经验在出生后改变神经元连接中的作用。使用新开发的体内经颅双光子成像技术和表达黄色荧光蛋白(YFP)的转基因小鼠,将在大脑皮层的各个区域中长时间跟踪单个突触的变化。突触前和突触后结构的可塑性将通过监测动物从青春期到成年期的数周至数月内树突棘和突触前终扣的形成、消除和大小变化来研究。此外,体内成像和三维连续电子显微镜的组合将用于研究与突触结构变化相关的超微结构相关性。由于感觉经验可以对神经系统的功能产生深远的影响,我们将确定短期和长期的视觉剥夺对突触连接在生活,发展和成熟的初级视觉皮层的影响。这种经验依赖性可塑性的机制将通过观察突触的结构变化来探索,同时操纵N-甲基-D-天冬氨酸(NMDA)受体活性的水平。总之,这些研究将提供一个全面的观点,经验的作用,在塑造突触连接在不同阶段的生活和建议潜在的战略,脑损伤后的功能康复
英文摘要
DESCRIPTION (provided by applicant): The aim of this proposal is to study the developmental regulation of synaptic plasticity and the role of sensory experience in modifying neuronal connectivity in postnatal life. Using a newly developed in vivo transcranial two-photon imaging technique and transgenic mice expressing Yellow Fluorescent Protein (YFP), changes in individual synapses will be followed over extended periods of time in various regions of the cerebral cortex. The plasticity of pre- and post-synaptic structures will be studied by monitoring the formation, elimination, and change in size of dendritic spines and presynaptic boutons over weeks to months as animals advance from adolescence to adulthood. Furthermore, a combination of in vivo imaging and three-dimensional serial electron microscopy will be used to study the ultra-structural correlates associated with changes in synaptic structures. Because sensory experience can have profound effects on the function of the nervous system, we will determine the short- and long-term influence of visual deprivation on synaptic connectivity in the living, developing and mature primary visual cortex. The mechanisms underlying this experience-dependent plasticity will be explored by visualizing structural changes of synapses while manipulating the level of N-methyI-D-aspartate (NMDA) receptor activity. Together, these studies will provide a comprehensive view of the role of experience in shaping synaptic connectivity at different stages of life and suggest potential strategies for functional rehabilitation after brain injury
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Mechanisms and therapeutics of calcium dysregulation and synapse loss in Alzheimer's disease
Optogenetic signaling inhibitors for studying brain plasticity
  • 批准号:
    9353464
  • 项目类别:
  • 资助金额:
    $45.9万
  • 财政年份:
    2016
  • 负责人:
    WENBIAO GAN
  • 依托单位:
LIPS: A novel technology for spatial and temporal control of protein synthesis in dendritic spines
LIPS: A novel technology for spatial and temporal control of protein synthesis in dendritic spines
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