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基于图像的定量分析方法在异常隐斜视的远程眼动跟踪中评估固视稳定性的比较。

Comparison of image-based quantification methods in evaluating fixation stability using a remote eye tracker in abnormal phoria.

机构信息

Department of Optometry, Kangwon National University, Samcheok, South Korea.

出版信息

J Int Med Res. 2022 May;50(5):3000605221098183. doi: 10.1177/03000605221098183.

Abstract

OBJECTIVE

This study was performed to establish a quantitative evaluation and comparison of fixation stability, as measured by an eye tracker, using image-based areas determined by the bivariate contour ellipse area (BCEA), kernel density estimation (KDE), and Scanpath methods.

METHODS

This prospective cross-sectional study included 45 and 20 participants with abnormal and normal phoria, respectively. Eye movements were recorded using a remote eye tracker and were plotted using RStudio software. Image-based areas were evaluated using ImageJ software.

RESULTS

The image-based areas used to evaluate fixation stability exhibited decreasing stability in the abnormal phoria group in the following order: KDE with ±1 standard deviation (SD), BCEA with ±1 SD, KDE with ±2 SD or Scanpath, and BCEA with ±2 SD. The BCEA tended to be overestimated, and the KDE tended to be underestimated at high density. The Scanpath method had a very high probability area because the area spans all gaze points.

CONCLUSIONS

Fixation stability could be quantified as image-based areas by the KDE, BCEA, and Scanpath methods. Our findings suggest that fixation stability may be evaluated using one or more methods.

摘要

目的

本研究旨在通过眼动追踪仪,利用双变量轮廓椭圆面积(BCEA)、核密度估计(KDE)和扫视轨迹方法确定的基于图像的区域,建立一种对固视稳定性进行定量评估和比较的方法。

方法

本前瞻性横断面研究纳入了分别具有异常和正常隐斜视的 45 名和 20 名参与者。使用远程眼动追踪仪记录眼动,并使用 RStudio 软件进行绘图。使用 ImageJ 软件评估基于图像的区域。

结果

用于评估固视稳定性的基于图像的区域显示,在异常隐斜视组中,稳定性依次降低,顺序如下:KDE(±1 标准差)、BCEA(±1 SD)、KDE(±2 SD)或扫视轨迹、BCEA(±2 SD)。BCEA 可能被高估,而在高密度时,KDE 可能被低估。扫视轨迹方法的概率区域非常高,因为该区域涵盖了所有注视点。

结论

可以通过 KDE、BCEA 和扫视轨迹方法将固视稳定性量化为基于图像的区域。我们的研究结果表明,可以使用一种或多种方法评估固视稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5135/9112722/cb1105fccbe1/10.1177_03000605221098183-fig2.jpg

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