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广角模拟人工视觉增强了自然环境中的空间导航和物体交互。

Wide-angle simulated artificial vision enhances spatial navigation and object interaction in a naturalistic environment.

机构信息

Medtronic Chair in Neuroengineering, Center for Neuroprosthetics and Institute of Bioengineering, School of Engineering, École Polytechnique Fédérale de Lausanne, Geneva, Switzerland.

Laboratory of Psychophysics, Brain Mind Institute, School of Life Sciences, École Polytechnique Fédérale de Lausanne, Lausanne, Switzerland.

出版信息

J Neural Eng. 2024 Nov 6;21(6). doi: 10.1088/1741-2552/ad8b6f.

Abstract

. Vision restoration approaches, such as prosthetics and optogenetics, provide visual perception to blind individuals in clinical settings. Yet their effectiveness in daily life remains a challenge. Stereotyped quantitative tests used in clinical trials often fail to translate into practical, everyday applications. On the one hand, assessing real-life benefits during clinical trials is complicated by environmental complexity, reproducibility issues, and safety concerns. On the other hand, predicting behavioral benefits of restorative therapies in naturalistic environments may be a crucial step before starting clinical trials to minimize patient discomfort and unmet expectations.. To address this, we leverage advancements in virtual reality technology to conduct a fully immersive and ecologically valid task within a physical artificial street environment. As a case study, we assess the impact of the visual field size in simulated artificial vision for common outdoor tasks.. We show that a wide visual angle (45°) enhances participants' ability to navigate and solve tasks more effectively, safely, and efficiently. Moreover, it promotes their learning and generalization capability. Concurrently, it changes the visual exploration behavior and facilitates a more accurate mental representation of the environment. Further increasing the visual angle beyond this value does not yield significant additional improvements in most metrics.. We present a methodology combining augmented reality with a naturalistic environment, enabling participants to perceive the world as patients with retinal implants would and to interact physically with it. Combining augmented reality in naturalistic environments is a valuable framework for low vision and vision restoration research.

摘要

. 视觉恢复方法,如义肢和光遗传学,为临床环境中的盲人提供视觉感知。然而,它们在日常生活中的有效性仍然是一个挑战。临床试验中使用的刻板的定量测试往往无法转化为实际的日常应用。一方面,由于环境复杂性、可重复性问题和安全问题,评估临床试验期间的实际益处变得复杂。另一方面,在开始临床试验之前,预测恢复性疗法在自然环境中的行为益处可能是一个关键步骤,以最大限度地减少患者的不适和期望落空。. 为了解决这个问题,我们利用虚拟现实技术的进步,在物理人工街道环境中进行完全沉浸式和生态有效的任务。作为一个案例研究,我们评估了模拟人工视觉中视野大小对常见户外任务的影响。. 我们表明,宽视角(45°)可以提高参与者导航和解决任务的能力,使其更有效、更安全、更高效。此外,它还提高了参与者的学习和泛化能力。同时,它改变了视觉探索行为,促进了对环境更准确的心理表征。进一步增加视角超过这个值并不会在大多数指标上带来显著的额外改善。. 我们提出了一种结合增强现实和自然环境的方法,使参与者能够像视网膜植入患者一样感知世界,并与之进行物理交互。将增强现实与自然环境相结合是低视力和视觉恢复研究的一个有价值的框架。

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