体育锻炼增强神经可塑性,延缓老年痴呆症。

Tzu-Wei Lin, Sheng-Feng Tsai, Yu-Min Kuo
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引用次数: 42

摘要

越来越多的证据表明,运动可以改善学习和记忆,并减轻神经变性,包括阿尔茨海默病(AD)。除了通过改变大脑各区域的突触结构和功能来改善神经可塑性外,锻炼还可以调节血管生成和神经胶质激活等系统,这些系统已知支持神经可塑性。此外,运动有助于维持大脑微环境,通过增强a β的清除来促进突触可塑性,a β是AD发病的主要原因之一。这篇综述的目的是强调运动对促进神经可塑性的积极影响。还讨论了运动调节神经可塑性的可能机制。毫无疑问,需要更多的研究来设计一个最佳的个性化运动方案,以增强大脑功能。
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Physical Exercise Enhances Neuroplasticity and Delays Alzheimer's Disease.

Accumulating evidence indicates that exercise can improve learning and memory as well as attenuate neurodegeneration, including Alzheimer's disease (AD). In addition to improving neuroplasticity by altering the synaptic structure and function in various brain regions, exercise also modulates systems like angiogenesis and glial activation that are known to support neuroplasticity. Moreover, exercise helps to maintain a cerebral microenvironment that facilitates synaptic plasticity by enhancing the clearance of Aβ, one of the main culprits of AD pathogenesis. The purpose of this review is to highlight the positive impacts of exercise on promoting neuroplasticity. Possible mechanisms involved in exercise-modulated neuroplasticity are also discussed. Undoubtedly, more studies are needed to design an optimal personalized exercise protocol for enhancing brain function.

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Erratum to: Flavonoids as an Intervention for Alzheimer's Disease: Progress and Hurdles Towards Defining a Mechanism of Action. Maintaining a Dynamic Brain: A Review of Empirical Findings Describing the Roles of Exercise, Learning, and Environmental Enrichment in Neuroplasticity from 2017-2023. The Multifaceted Effects of Flavonoids on Neuroplasticity Nicotinamide Mononucleotide Prevents Cisplatin-Induced Mitochondrial Defects in Cortical Neurons Derived from Human Induced Pluripotent Stem Cells. Proceedings from the Albert Charitable Trust Inaugural Workshop on 'Understanding the Acute Effects of Exercise on the Brain'.
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