Maintaining a Dynamic Brain: A Review of Empirical Findings Describing the Roles of Exercise, Learning, and Environmental Enrichment in Neuroplasticity from 2017-2023.

Brain plasticity (Amsterdam, Netherlands) Pub Date : 2024-05-14 eCollection Date: 2024-01-01 DOI:10.3233/BPL-230151
Katrina A Milbocker, Ian F Smith, Anna Y Klintsova
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Abstract

Brain plasticity, also termed neuroplasticity, refers to the brain's life-long ability to reorganize itself in response to various changes in the environment, experiences, and learning. The brain is a dynamic organ capable of responding to stimulating or depriving environments, activities, and circumstances from changes in gene expression, release of neurotransmitters and neurotrophic factors, to cellular reorganization and reprogrammed functional connectivity. The rate of neuroplastic alteration varies across the lifespan, creating further challenges for understanding and manipulating these processes to benefit motor control, learning, memory, and neural remodeling after injury. Neuroplasticity-related research spans several decades, and hundreds of reviews have been written and published since its inception. Here we present an overview of the empirical papers published between 2017 and 2023 that address the unique effects of exercise, plasticity-stimulating activities, and the depriving effect of social isolation on brain plasticity and behavior.

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保持大脑活力:2017-2023年描述运动、学习和丰富环境在神经可塑性中作用的实证研究综述》。
大脑可塑性又称神经可塑性,是指大脑在一生中都能根据环境、经验和学习的各种变化进行自我重组。从基因表达的变化、神经递质和神经营养因子的释放,到细胞重组和功能连接的重新编程,大脑是一个能对刺激或剥夺环境、活动和情况做出反应的动态器官。神经可塑性改变的速度在人的一生中各不相同,这为了解和操纵这些过程以利于受伤后的运动控制、学习、记忆和神经重塑带来了更多挑战。与神经可塑性相关的研究横跨数十年,自其诞生以来已撰写并发表了数百篇综述。在此,我们将对 2017 年至 2023 年间发表的经验性论文进行综述,这些论文涉及运动、可塑性刺激活动以及社会隔离的剥夺效应对大脑可塑性和行为的独特影响。
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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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