确定眼球注视和脑力劳动负荷对辅助设备控制的影响。

IF 3.4 Q2 ENGINEERING, BIOMEDICAL
Wearable technologies Pub Date : 2025-03-03 eCollection Date: 2025-01-01 DOI:10.1017/wtc.2024.27
Larisa Y C Loke, Demiana R Barsoum, Todd D Murphey, Brenna D Argall
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引用次数: 0

摘要

由于技术的改进和可用性,眼球追踪越来越受欢迎。然而,在辅助设备控制领域,眼球注视跟踪通常以离散的方式使用(例如,激活屏幕上的按钮),并且没有充分利用注视信号的潜力。在这篇文章中,我们提出了一种方法,通过基于屏幕的任务来分离各种类型的眼球运动,来收集反应性和受控的眼球注视信号。由此产生的数据使我们能够为眼睛注视界面的使用建立个性化的特征。本文介绍了一项对运动障碍参与者进行的研究结果,为最大限度地发挥眼睛注视辅助设备控制的潜力提供了见解。重要的是,我们展示了将直接连续的眼睛注视输入纳入基于凝视的界面设计的潜力;通常被认为是棘手的,因为“点石成”的问题,即区分感知和界面操作的凝视运动。我们的关键见解是利用平滑追踪特征的个性化测量来区分控制凝视和环境扫描凝视。我们还提出了与基于凝视的心理工作量指标相关的结果,并展示了同时使用眼睛凝视作为控制输入以及离线和实时评估用户心理工作量的潜力。这些发现可能会为使用眼睛注视的连续控制范式的发展提供信息,以及使用眼动追踪作为系统的唯一输入方式,在人工生成和自主生成的输入之间共享控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterizing eye gaze and mental workload for assistive device control.

Eye gaze tracking is increasingly popular due to improved technology and availability. In the domain of assistive device control, however, eye gaze tracking is often used in discrete ways (e.g., activating buttons on a screen), and does not harness the full potential of the gaze signal. In this article, we present a method for collecting both reactionary and controlled eye gaze signals, via screen-based tasks designed to isolate various types of eye movements. The resulting data allows us to build an individualized characterization for eye gaze interface use. Results from a study conducted with participants with motor impairments are presented, offering insights into maximizing the potential of eye gaze for assistive device control. Importantly, we demonstrate the potential for incorporating direct continuous eye gaze inputs into gaze-based interface designs; generally seen as intractable due to the 'Midas touch' problem of differentiating between gaze movements for perception versus for interface operation. Our key insight is to make use of an individualized measure of smooth pursuit characteristics to differentiate between gaze for control and gaze for environment scanning. We also present results relating to gaze-based metrics for mental workload and show the potential for the concurrent use of eye gaze for control input as well as assessing a user's mental workload both offline and in real-time. These findings might inform the development of continuous control paradigms using eye gaze, as well as the use of eye tracking as the sole input modality to systems that share control between human-generated and autonomy-generated inputs.

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来源期刊
CiteScore
5.80
自引率
0.00%
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审稿时长
11 weeks
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