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Effects of Multisine Signal Bandwidth on Eye Movement Dynamics

机译:多正弦信号带宽对眼动动力学的影响

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摘要

In the analysis of human motor skills, tracking tasks with multisine target signals are often performed as they allow for quantitative measurement, identification, and modeling of human control dynamics. In this paper, the same"cybernetic"approach is taken to analyze eye movement dynamics ingazetracking tasks, where participants had to track a moving target marker across the screen) with their eyes (i.e., a eye-only task) and 2) with their dominant hand (i.e., a eye-hand task). A human-in-the-loop experiment with 10 participants was performed to measure the eye movement dynamics. These two different conditions were performed with four different bandwidths of the multisine target signal driving the movement of the visual stimulus. The results show that the measured eye movement dynamics can be identified from the data of all experiment conditions and can be accurately modeled as an underdamped mass-spring-damper system with a time delay. Furthermore, with increased target signal bandwidth the bandwidth of participants’ eye movements also increases. Future development of gaze tracking tasks into a new tool for assessment of altered gaze behavior due to neurological diseases should take the balance between saccadic and smooth pursuit eye movements into account and avoid very high (i.e., too difficult) bandwidths to warrant accurate modelling of gaze dynamics.
机译:在分析人类运动技能时,通常会执行具有多正弦目标信号的跟踪任务,因为它们可以对人类控制动力学进行定量测量,识别和建模。在本文中,采用了相同的“ cybernetic”方法来分析眼动动力学凝视跟踪任务,其中参与者必须用他们的眼睛(即仅眼睛的任务)和2)用他们的眼睛来跟踪在屏幕上移动的目标标记。占主导地位的手(即,眼神的任务)。进行了一个有10位参与者的在环实验,以测量眼睛的运动动态。这两个不同条件是通过驱动正弦刺激运动的多正弦目标信号的四个不同带宽执行的。结果表明,可以从所有实验条件的数据中识别出所测得的眼动动力学,并且可以将其精确建模为具有时滞的欠阻尼质量弹簧阻尼器系统。此外,随着目标信号带宽的增加,参与者眼球运动的带宽也随之增加。凝视跟踪任务的未来发展将成为评估由于神经系统疾病引起的凝视行为改变的新工具,应考虑到扫视和平稳追逐眼球运动之间的平衡,并避免使用过高(即太困难)的带宽以确保对凝视进行精确建模动力学。

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