3D-Oculography: New Method of Determination of Human Gaze Point Position in Space

Pavel V. Arakcheyev, Valeriy L. Bezdelov, E. V. Buryi, Denis A. Semerenko, A. L. Shlemenkov
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Abstract

INTRODUCTION: Oculography — a method of recording movement of eyeballs of a human or animal by analyzing changes in electrical potentials recorded by two electrodes fixed on skin near the eye socket is used to solve various problems. Among them are the determination of pronounced nystagmus, of characteristic changes of oculomotor reactions in different conditions of observing video images. Of interest is the determination of the position of gaze point (GP) and of the area of increased attention in three-dimensional space. This information is associated with the cognitive system of the observer and is of interest not only to physiologists, but also to specialists of related fields. . AIM: To experimentally prove the effectiveness of the developed method of 3D-oculography providing determination of the GP position in space. MATERIALS AND METHODS: The possibility of restoring GP position based on the analysis of recorded oculograms even in the presence of additive noise induced by the external electromagnetic fields, is proven by the numeric modeling method. Direct experimental studies were conducted with recording oculograms of a human observer on a previously verified equipment. A ZB-2 oculograph was used, the data obtained were verified by the method of average values. RESULTS: The obtained modeling results permitted to determine the maximal values of dispersion of additive noise and amplitude shifts of signals, which make possible satisfactory restoration of the coordinates of the GP and parameters of its movement trajectory. The qualitative correspondence of the experimental results to the results of numerical modeling was proven. The correspondence between trajectories of the observed object moving in space and trajectories of GP movement synthesized from counts of recorded oculograms was confirmed. CONCLUSION: Multichannel record of oculographic signals permits restoring parameters of the GP trajectory. Creating systems for recording these signals requires minimization of the noise level. An increase in dispersion of the noise component of the signal leads to most significant errors in calculating the coordinates of trajectory points.
三维眼动仪:确定人类注视点空间位置的新方法
简介:眼动图是一种通过分析固定在眼窝附近皮肤上的两个电极所记录的电位变化来记录人或动物眼球运动的方法,用于解决各种问题。其中包括确定明显的眼球震颤、在观察视频图像的不同条件下眼球运动反应的特征变化。令人感兴趣的是确定注视点(GP)的位置和三维空间中注意力集中的区域。这些信息与观察者的认知系统有关,不仅生理学家感兴趣,相关领域的专家也很感兴趣。.目的:通过实验证明所开发的三维眼动图方法在确定 GP 空间位置方面的有效性。材料与方法:通过数值建模方法证明,即使在外部电磁场引起的附加噪声存在的情况下,也能根据眼图记录分析恢复 GP 位置。我们使用先前验证过的设备对人类观察者的眼图记录进行了直接实验研究。使用的是 ZB-2 型眼动仪,获得的数据通过平均值方法进行了验证。结果:获得的建模结果可以确定加性噪声和信号振幅偏移的最大分散值,从而可以令人满意地恢复 GP 坐标及其运动轨迹参数。实验结果与数值建模结果的定性对应关系已经得到证实。观察到的物体在空间中的运动轨迹与根据眼图记录计数合成的 GP 运动轨迹之间的对应关系也得到了证实。结论:多通道眼图信号记录可以还原 GP 运动轨迹参数。创建记录这些信号的系统需要尽量降低噪音水平。信号中噪声成分分散度的增加会导致轨迹点坐标的计算出现重大误差。
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