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通过感官增强改进空间知识获取

Improved Spatial Knowledge Acquisition through Sensory Augmentation.

作者信息

Schmidt Vincent, König Sabine U, Dilawar Rabia, Sánchez Pacheco Tracy, König Peter

机构信息

Neurobiopsychology Group, Institute of Cognitive Science, University of Osnabrück, Wachsbleiche 27, 49090 Osnabrück, Germany.

Department of Neurophysiology and Pathophysiology, University Medical Center Hamburg-Eppendorf, 20246 Hamburg, Germany.

出版信息

Brain Sci. 2023 Apr 25;13(5):720. doi: 10.3390/brainsci13050720.

Abstract

Sensory augmentation provides novel opportunities to broaden our knowledge of human perception through external sensors that record and transmit information beyond natural perception. To assess whether such augmented senses affect the acquisition of spatial knowledge during navigation, we trained a group of 27 participants for six weeks with an augmented sense for cardinal directions called the feelSpace belt. Then, we recruited a control group that did not receive the augmented sense and the corresponding training. All 53 participants first explored the Westbrook virtual reality environment for two and a half hours spread over five sessions before assessing their spatial knowledge in four immersive virtual reality tasks measuring cardinal, route, and survey knowledge. We found that the belt group acquired significantly more accurate cardinal and survey knowledge, which was measured in pointing accuracy, distance, and rotation estimates. Interestingly, the augmented sense also positively affected route knowledge, although to a lesser degree. Finally, the belt group reported a significant increase in the use of spatial strategies after training, while the groups' ratings were comparable at baseline. The results suggest that six weeks of training with the feelSpace belt led to improved survey and route knowledge acquisition. Moreover, the findings of our study could inform the development of assistive technologies for individuals with visual or navigational impairments, which may lead to enhanced navigation skills and quality of life.

摘要

感官增强提供了新的机会,通过记录和传输超出自然感知范围信息的外部传感器来拓宽我们对人类感知的认识。为了评估这种增强的感官是否会影响导航过程中空间知识的获取,我们对一组27名参与者进行了为期六周的训练,使用一种名为feelSpace腰带的增强方向感。然后,我们招募了一个没有接受增强感官及相应训练的对照组。所有53名参与者首先在五个阶段中,分五次探索韦斯特布鲁克虚拟现实环境共两个半小时,然后在四项沉浸式虚拟现实任务中评估他们的空间知识,这些任务测量方位、路线和概览知识。我们发现,腰带组获得了显著更准确的方位和概览知识,这通过指向准确性、距离和旋转估计来衡量。有趣的是,增强的感官对方位知识也有积极影响,尽管程度较小。最后,腰带组报告说训练后空间策略的使用显著增加,而两组在基线时的评分相当。结果表明,使用feelSpace腰带进行六周训练可提高概览和路线知识的获取。此外,我们研究的结果可为视觉或导航障碍者辅助技术的开发提供参考,这可能会提高导航技能和生活质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd07/10216147/6e5002d68ae0/brainsci-13-00720-g001.jpg

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