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兰卡斯特红绿测试的计算机化版本。

A computerized version of the Lancaster red-green test.

作者信息

Awadein Ahmed

机构信息

Cairo University Faculty of Medicine, Cairo, Egypt.

出版信息

J AAPOS. 2013 Apr;17(2):197-202. doi: 10.1016/j.jaapos.2012.11.019.

Abstract

PURPOSE

To compare results from a computerized version of the Lancaster red-green test with those of the conventional test.

METHODS

Consecutive adult patients with noncomitant strabismus were tested with the conventional Lancaster red-green test and with a computerized version of the same. The computerized test was administered by means of a 40-inch monitor at a working distance of 50 cm or a projector and screen at a working distance of 1 meter. Agreement between the measured horizontal, vertical, and torsional deviations in the conventional test and both computerized versions was evaluated with the mountain plot, Bland-Altman plot, and Deming regression analysis models.

RESULTS

A total of 82 patients were tested. Agreement of measured horizontal deviation in the conventional test was better with the projector version of the test (limits of agreement: right eye, -4.6(Δ) to 3.4(Δ); left eye, -4.9(Δ) to 3.5(Δ)) than the monitor version (limits of agreement: right eye, -10(Δ) to 4.2(Δ); left eye, -8.9(Δ) to 4.1(Δ)). The measured vertical and torsional deviation in the conventional test showed good agreement with both versions of the computerized test (limits of agreement <5(Δ) for vertical measurements and <3° for torsional measurements). Agreement was similar for right and left eyes.

CONCLUSIONS

The vertical and torsional deviations measured with both computerized versions of the test were in good agreement with those obtained with the conventional test. For measured horizontal deviations, the projector version had better agreement than the monitor version.

摘要

目的

比较计算机化版兰开斯特红绿测试与传统测试的结果。

方法

对连续性非共同性斜视成年患者进行传统兰开斯特红绿测试及其计算机化版本测试。计算机化测试通过40英寸显示器在50厘米工作距离下进行,或通过投影仪和屏幕在1米工作距离下进行。使用山形图、布兰德-奥特曼图和戴明回归分析模型评估传统测试与两个计算机化版本中测量的水平、垂直和扭转偏差之间的一致性。

结果

共测试了82例患者。传统测试中测量的水平偏差与投影仪版本测试的一致性更好(一致性界限:右眼,-4.6(Δ)至3.4(Δ);左眼,-4.9(Δ)至3.5(Δ)),优于显示器版本(一致性界限:右眼,-10(Δ)至4.2(Δ);左眼,-8.9(Δ)至4.1(Δ))。传统测试中测量的垂直和扭转偏差与两个计算机化版本测试均显示出良好的一致性(垂直测量的一致性界限<5(Δ),扭转测量的一致性界限<3°)。左右眼的一致性相似。

结论

两种计算机化版本测试测量的垂直和扭转偏差与传统测试获得的结果高度一致。对于测量的水平偏差,投影仪版本的一致性优于显示器版本。

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