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Environmental enrichment and the sensory brain: the role of enrichment in remediating brain injury

机译:环境富集和感觉大脑:富集在补救脑损伤中的作用

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摘要

The brain's life-long capacity for experience-dependent plasticity allows adaptation to new environments or to changes in the environment, and to changes in internal brain states such as occurs in brain damage. Since the initial discovery by Hebb () that environmental enrichment (EE) was able to confer improvements in cognitive behavior, EE has been investigated as a powerful form of experience-dependent plasticity. Animal studies have shown that exposure to EE results in a number of molecular and morphological alterations, which are thought to underpin changes in neuronal function and ultimately, behavior. These consequences of EE make it ideally suited for investigation into its use as a potential therapy after neurological disorders, such as traumatic brain injury (TBI). In this review, we aim to first briefly discuss the effects of EE on behavior and neuronal function, followed by a review of the underlying molecular and structural changes that account for EE-dependent plasticity in the normal (uninjured) adult brain. We then extend this review to specifically address the role of EE in the treatment of experimental TBI, where we will discuss the demonstrated sensorimotor and cognitive benefits associated with exposure to EE, and their possible mechanisms. Finally, we will explore the use of EE-based rehabilitation in the treatment of human TBI patients, highlighting the remaining questions regarding the effects of EE.
机译:大脑的终生依赖于经验的可塑性,可以适应新的环境或环境的变化,以及适应内部脑部状态的变化,例如发生在脑部损伤中。自从Hebb()最初发现环境富集(EE)可以改善认知行为以来,人们就已经将EE作为一种依赖于经验的可塑性的有力形式进行了研究。动物研究表明,暴露于EE会导致许多分子和形态学改变,这些改变被认为是神经元功能以及最终行为改变的基础。 EE的这些后果使其非常适合研究其在神经系统疾病(例如脑外伤(TBI))后作为潜在疗法的用途。在这篇综述中,我们的目的是首先简要讨论EE对行为和神经元功能的影响,然后概述潜在的分子和结构变化,这些变化解释了正常(未受伤)成人大脑中EE依赖的可塑性。然后,我们将这篇综述扩展为专门解决EE在实验性TBI的治疗中的作用,在此我们将讨论与暴露于EE相关的已证明的感觉运动和认知益处及其可能的机制。最后,我们将探索基于EE的康复在人类TBI患者治疗中的应用,重点介绍有关EE效果的其余问题。

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