The Role of Depth Perception in XR from a Neuroscience Perspective: A Primer and Survey

Vetle Hushagen, Gustav C. Tresselt, N. Smit, K. Specht
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Abstract

Augmented and virtual reality (XR) are potentially powerful tools for enhancing the efficiency of interactive visualization of complex data in biology and medicine. The benefits of visualization of digital objects in XR mainly arise from enhanced depth perception due to the stereoscopic nature of XR head mounted devices. With the added depth dimension, XR is in a prime position to convey complex information and support tasks where 3D information is important. In order to inform the development of novel XR applications in the biology and medicine domain, we present a survey which reviews the neuroscientific basis underlying the immersive features of XR. To make this literature more accessible to the visualization community, we first describe the basics of the visual system, highlighting how visual features are combined to objects and processed in higher cortical areas with a special focus on depth vision. Based on state of the art findings in neuroscience literature related to depth perception, we provide several recommendations for developers and designers. Our aim is to aid development of XR applications and strengthen development of tools aimed at molecular visualization, medical education, and surgery, as well as inspire new application areas. CCS Concepts • General and reference → Surveys and overviews; • Applied computing → Life and medical sciences; • Human-centered computing → Virtual reality; Mixed / augmented reality;
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从神经科学的角度看深度感知在XR中的作用:入门和综述
增强现实和虚拟现实(XR)是提高生物和医学领域复杂数据交互可视化效率的潜在强大工具。XR中数字对象可视化的好处主要来自于XR头戴式设备的立体特性增强的深度感知。随着深度维度的增加,XR在传递复杂信息和支持3D信息很重要的任务方面处于有利地位。为了向生物和医学领域新型XR应用的发展提供信息,我们提出了一项调查,回顾了XR沉浸式特征背后的神经科学基础。为了使这些文献更容易被可视化社区所理解,我们首先描述了视觉系统的基础,强调了视觉特征是如何与物体结合在一起的,并在皮层的高级区域进行处理,特别关注深度视觉。基于深度感知相关的神经科学文献的最新发现,我们为开发者和设计师提供了一些建议。我们的目标是帮助开发XR应用,加强针对分子可视化、医学教育和外科手术的工具的开发,并激发新的应用领域。CCS概念•一般和参考→调查和概述;•应用计算→生命和医学科学;•以人为本→虚拟现实;混合/增强现实;
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