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首页> 外文期刊>European Journal of Pharmacology: An International Journal >Optical imaging of structural and functional synaptic plasticity in vivo
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Optical imaging of structural and functional synaptic plasticity in vivo

机译:体内结构和功能性突触可塑性的光学成像

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摘要

The adult brain has long been viewed as a collection of neuronal networks that maintain a fixed configuration of synaptic connections. Brain plasticity and learning was thought to depend exclusively on changes in the gain and offset of these connections. Over the last 50 years, molecular and cellular studies of neuroplasticity have altered this view. Brain plasticity is now viewed as a continuum of structural changes that could vary from long-range axon growth to the twitching of dendritic spines and synaptic receptor composition dynamics. Plasticity proteins similar to those that drive neuronal development may underpin brain plasticity, and consequently could regulate adaptations to new experiences and learning. In vivo imaging has confirmed that neuronal plasticity in the adult brain involves subtle structural changes at synaptic connections, including synapse formation and pruning. Synaptic structural changes are associated with experience-dependent plasticity, learning, brain traumas and neurodegeneration. Owing to the expanding toolbox of in vivo imaging we have come to the brink of understanding the causal relationship between structural synaptic network dynamics and functional brain plasticity. This review summarizes the technical developments in the imaging of laboratory animals' brains in vivo and the insights they have provided into the mechanisms of brain plasticity and learning.
机译:长期以来,成人大脑一直被视为神经元网络的集合,这些神经元网络维持突触连接的固定配置。人们认为大脑的可塑性和学习完全取决于这些连接的增益和偏移的变化。在过去的50年中,神经可塑性的分子和细胞研究改变了这种观点。现在,人们将大脑可塑性视为结构变化的连续体,该结构变化的范围可能从远程轴突生长到树突棘抽搐和突触受体组成动态变化。与驱动神经元发育的蛋白质类似的可塑性蛋白质可能会增强大脑的可塑性,因此可以调节对新体验和学习的适应。体内成像已证实,成年大脑中的神经元可塑性涉及突触连接处的细微结构变化,包括突触形成和修剪。突触的结构变化与经验依赖的可塑性,学习,脑外伤和神经变性有关。由于体内成像工具箱的不断扩大,我们已经接近了解结构性突触网络动力学与功能性大脑可塑性之间的因果关系。这篇综述总结了实验室动物体内成像的技术发展及其对大脑可塑性和学习机制的见解。

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