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Neurorehabilitation of Spatial Memory Using Virtual Environments: A Systematic Review

机译:使用虚拟环境的空间记忆Neurorathilitation:系统评价

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摘要

In recent years, virtual reality (VR) technologies have become widely used in clinical settings because they offer impressive opportunities for neurorehabilitation of different cognitive deficits. Specifically, virtual environments (VEs) have ideal characteristics for navigational training aimed at rehabilitating spatial memory. A systematic search, following PRISMA guidelines, was carried out to explore the current scenario in neurorehabilitation of spatial memory using virtual reality. The literature on this topic was queried, 5048 papers were screened, and 16 studies were included, covering patients presenting different neuropsychological diseases. Our findings highlight the potential of the navigational task in virtual environments (VEs) for enhancing navigation and orientation abilities in patients with spatial memory disorders. The results are promising and suggest that VR training can facilitate neurorehabilitation, promoting brain plasticity processes. An overview of how VR-based training has been implemented is crucial for using these tools in clinical settings. Hence, in the current manuscript, we have critically debated the structure and the length of training protocols, as well as a different type of exploration through VR devices with different degrees of immersion. Furthermore, we analyzed and highlighted the crucial role played by the selection of the assessment tools.
机译:近年来,虚拟现实(VR)技术已广泛用于临床环境,因为它们为不同的认知赤字的神经环境提供了令人印象深刻的机会。具体而言,虚拟环境(VES)具有旨在恢复空间记忆的导航培训的理想特征。在PRISMA指南之后,进行了系统搜索,以探讨使用虚拟现实的空间记忆神经环境的当前情景。对该主题的文献进行了查询,筛查了5048篇论文,包括16项研究,涵盖患者呈现出不同的神经心理疾病。我们的研究结果突出了虚拟环境中导航任务的潜力(VES),以提高空间记忆障碍患者的导航和方向能力。结果是有前途的,并表明VR培训可以促进神经晕厥,促进脑塑性过程。概述了基于VR的培训如何实施对于在临床环境中使用这些工具至关重要。因此,在目前的稿件中,我们对训练协议的结构和长度具有批判性辩论,以及通过具有不同程度的VR器件的VR器件的不同类型的探索。此外,我们分析并突出了选择评估工具所扮演的至关重要作用。

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