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高分辨率视野计检测青光眼视野缺损的可检测性

Detectability of Visual Field Defects in Glaucoma With High-resolution Perimetry.

作者信息

Numata Takuya, Matsumoto Chota, Okuyama Sachiko, Tanabe Fumi, Hashimoto Shigeki, Nomoto Hiroki, Shimomura Yoshikazu

机构信息

Department of Ophthalmology, Kindai University Faculty of Medicine, Osaka, Japan.

出版信息

J Glaucoma. 2016 Oct;25(10):847-853. doi: 10.1097/IJG.0000000000000460.

Abstract

PURPOSE

To extrapolate the optimal test point resolution for assessment of glaucomatous visual field (VF) defects including subtle functional defects, we performed high-resolution perimetry with the 0.5 degrees test point resolution.

SUBJECTS AND METHODS

Subjects were 11 eyes of 11 normal volunteers and 16 eyes of 16 glaucomatous patients. Octopus 900 custom test was used to measure 61 points with the test point resolution of 0.5 degrees on the temporal meridian of 45 degrees within the eccentricity of 30 degrees. In the glaucoma cases, VF profiles were extracted in 17 patterns of the test point resolutions that ranged from 0.5 to 8.5 degrees and the mean defect (MD), square root of loss variance (sLV), and maximum sensitivity loss (Max loss) were calculated. The influence of the test point resolution on MD, sLV, and Max loss was examined. In addition, the test range from the fixation point to the eccentricity of 30 degrees was divided into 3 zones. Similarly, each zone was investigated if the test point resolution exerted influence on the MD, sLV, and Max loss.

RESULTS

Our glaucoma cases did not show any significant differences in MD and sLV regardless of the resolution. Max loss showed significant difference at resolution ≥1.0 degree. MD and sLV did not show significant differences by the change of resolution in each zone. Max loss showed significant differences at resolution ≥1.5 degrees within the central 10 degrees.

CONCLUSIONS

To detect subtle VF defects within the eccentricity of 10 degrees, high-resolution perimetry with the test point resolution of <1.5 degrees is necessary.

摘要

目的

为推断用于评估青光眼视野(VF)缺损(包括细微功能缺损)的最佳测试点分辨率,我们采用0.5度测试点分辨率进行了高分辨率视野检查。

受试者与方法

受试者包括11名正常志愿者的11只眼和16名青光眼患者的16只眼。使用Octopus 900定制测试,在30度偏心距内45度的颞侧子午线上以0.5度的测试点分辨率测量61个点。在青光眼病例中,提取了17种测试点分辨率模式下的VF曲线,这些分辨率范围从0.5度到8.5度,并计算了平均缺损(MD)、损失方差平方根(sLV)和最大敏感度损失(Max loss)。研究了测试点分辨率对MD、sLV和Max loss的影响。此外,将从注视点到30度偏心距的测试范围分为3个区域。同样,研究了每个区域中测试点分辨率是否对MD、sLV和Max loss有影响。

结果

无论分辨率如何,我们的青光眼病例在MD和sLV方面均未显示出任何显著差异。在分辨率≥1.0度时,Max loss显示出显著差异。MD和sLV在每个区域内随分辨率变化未显示出显著差异。在中央10度范围内,分辨率≥1.5度时,Max loss显示出显著差异。

结论

为检测10度偏心距内的细微VF缺损,需要采用测试点分辨率<1.5度的高分辨率视野检查。

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