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[使用眼动标记记录系统测量眼动来校正眼电图]

[Correction of EOG with eye movement measured by the eye mark recorder system].

作者信息

Itsuki N, Kubo M

机构信息

Department of Electrical Engineering, Niihama National College of Technology, Niihama, Japan.

出版信息

Nippon Ganka Gakkai Zasshi. 1991 Nov;95(11):1085-93.

PMID:1759648
Abstract

The electrooculogram (EOG) is usually necessary for the subject to fixate two targets alternately at a fixed visual angle. However, in the patients with poor vision, it can be difficult to fixate exactly. In such case, the results can be improved by using both the measurement of real eye position and the measurement of EOGs in combination. In this study, we measured subject's eye position simultaneously with the potential changes around his eyes as the subject pursued alternately two on-and-off visual targets which were horizontally placed on the cylindrical screen at a regular visual angle in front of his eyes. The EOG is obtained from those potential changes. If the difference between the target position and the fixating point can be calculated from the net eye movement measured with an eye camera, the error potential can be derived from this difference. Therefore, exact potential changes are obtained by correcting the measured potentials with the above error potentials. The authors were able to confirm that the potential changes were approximately proportional to the amplitude of saccadic eye movements within about 30 degrees in front of the eyes. Therefore, the simultaneous measurement of the potential changes and the eye position enable measurement of EOG without pursuing the targets by transforming the measured potentials into the exact values corresponding to the constant amplitudes of saccades.

摘要

对于受试者而言,通常需要眼电图(EOG)来以固定视角交替注视两个目标。然而,对于视力不佳的患者,精确注视可能会很困难。在这种情况下,通过结合使用真实眼位测量和EOG测量,结果可能会得到改善。在本研究中,当受试者交替追踪水平放置在其眼前圆柱屏幕上、以规则视角闪烁的两个视觉目标时,我们同时测量了受试者的眼位以及其眼睛周围的电位变化。EOG即从这些电位变化中获取。如果可以根据用眼部摄像头测量的净眼动来计算目标位置与注视点之间的差异,那么误差电位就可以从这个差异中推导出来。因此,通过用上述误差电位校正测量电位,可以获得精确的电位变化。作者能够确认,在眼前约30度范围内,电位变化与眼球跳动的幅度大致成比例。因此,通过将测量电位转换为与固定幅度扫视相对应的精确值,同时测量电位变化和眼位能够在不追踪目标的情况下测量EOG。

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