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现实世界环境中的导航:移动脑成像进展带来的新机遇

Navigation in Real-World Environments: New Opportunities Afforded by Advances in Mobile Brain Imaging.

作者信息

Park Joanne L, Dudchenko Paul A, Donaldson David I

机构信息

Department of Psychology, Faculty of Natural Sciences, University of Stirling, Stirling, United Kingdom.

出版信息

Front Hum Neurosci. 2018 Sep 11;12:361. doi: 10.3389/fnhum.2018.00361. eCollection 2018.

Abstract

A central question in neuroscience and psychology is how the mammalian brain represents the outside world and enables interaction with it. Significant progress on this question has been made in the domain of spatial cognition, where a consistent network of brain regions that represent external space has been identified in both humans and rodents. In rodents, much of the work to date has been done in situations where the animal is free to move about naturally. By contrast, the majority of work carried out to date in humans is static, due to limitations imposed by traditional laboratory based imaging techniques. In recent years, significant progress has been made in bridging the gap between animal and human work by employing virtual reality (VR) technology to simulate aspects of real-world navigation. Despite this progress, the VR studies often fail to fully simulate important aspects of real-world navigation, where information derived from self-motion is integrated with representations of environmental features and task goals. In the current review article, we provide a brief overview of animal and human imaging work to date, focusing on commonalties and differences in findings across species. Following on from this we discuss VR studies of spatial cognition, outlining limitations and developments, before introducing mobile brain imaging techniques and describe technical challenges and solutions for real-world recording. Finally, we discuss how these advances in mobile brain imaging technology, provide an unprecedented opportunity to illuminate how the brain represents complex multifaceted information during naturalistic navigation.

摘要

神经科学和心理学中的一个核心问题是哺乳动物的大脑如何表征外部世界并与之互动。在空间认知领域,这个问题已经取得了重大进展,在人类和啮齿动物中都已确定了一个表征外部空间的一致脑区网络。在啮齿动物中,迄今为止的大部分研究是在动物可以自由自然活动的情况下进行的。相比之下,由于传统基于实验室的成像技术的限制,迄今为止在人类中进行的大多数研究都是静态的。近年来,通过使用虚拟现实(VR)技术来模拟现实世界导航的各个方面,在弥合动物和人类研究之间的差距方面取得了重大进展。尽管取得了这一进展,但VR研究往往未能充分模拟现实世界导航的重要方面,即在现实世界导航中,来自自身运动的信息与环境特征和任务目标的表征相结合。在当前的综述文章中,我们简要概述了迄今为止的动物和人类成像研究,重点关注不同物种研究结果的共性和差异。在此基础上,我们讨论了空间认知的VR研究,概述了其局限性和发展情况,然后介绍了移动脑成像技术,并描述了现实世界记录中的技术挑战和解决方案。最后,我们讨论了移动脑成像技术的这些进展如何提供了一个前所未有的机会,来阐明大脑在自然导航过程中如何表征复杂的多方面信息。

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