评估检查室长度对斜视测量影响的试点研究。

Q3 Medicine
Michael Langue, Thomas Kellner, Qian Yang, Erik B Lehman, Ajay Soni
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引用次数: 0

摘要

目的:我们的研究旨在探讨在已知远近悬殊的情况下,减小患者到固定目标的距离对斜视测量的影响:方法:由一名小儿眼科医生在标准距离 18 英尺处进行斜视测量,并与在距离固定目标 16 英尺、14 英尺、12 英尺和 10 英尺处进行的测量进行比较。有临床意义的差异被定义为大于 2.5 棱镜屈光度(PD),因为这种程度的差异可能会改变手术计划:本研究共纳入 39 名受试者,包括 22 名外斜视者和 17 名内斜视者。与 18 英尺相比,外斜视组在 16、14、12 和 10 英尺长度上的平均棱镜屈光度差(PDD)分别为 1.3(标清 1.9,范围 0-6)、1.3(标清 2.2,范围 0-8)、1.7(标清 3.2,范围 0-14)和 2.8(标清 4.4,范围 0-14)。在内斜视患者中,相同距离的平均 PDD 分别为 1.1(标清 1.9,范围 0-7)、2.1(标清 2.6,范围 0-7)、3.9(标清 4.9,范围 0-19)和 4.3(标清 5.1,范围 0-19)。与 18 英尺相比,PDD 在 16、14、12 和 10 英尺处大于 2.5 的外斜视患者比例分别为 13.6%(n = 3)、13.6%(n = 3)、18.2%(n = 4)和 27.3%(n = 6)。在内径组中,相同距离的 PDD 分别为 11.8%(n = 2)、35.3%(n = 6)、47.1%(n = 8)和 47.1%(n = 8):本试验研究首次调查了从患者到固定目标的不同非镜像距离上斜视测量角度的变化。我们的方法确定了一个框架,可用于更高功率的研究,以进一步了解房间长度对斜视评估的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pilot Study Assessing the Effect of Exam Room Length on the Measurement of Strabismus.

Purpose: Our study aims to investigate the effect of decreasing distance from the patient to the fixation target on the measurement of strabismus with a known distance-near disparity.

Methods: Strabismus measurements were taken by one pediatric ophthalmologist at our standard distance of 18 feet and compared to those taken at 16, 14, 12, and 10 feet from the fixation target. A clinically meaningful difference was defined as >2.5 prism diopters (PD), since a difference of that magnitude may alter surgical planning.

Results: Thirty-nine subjects, including 22 exotropes and 17 esotropes, were included in this study. Mean prism diopter difference (PDD) in the exotrope group at lengths of 16, 14, 12, and 10 feet compared to 18 feet were 1.3 (SD 1.9, range 0-6), 1.3 (SD 2.2, range 0-8), 1.7 (SD 3.2, range 0-14), and 2.8 (SD 4.4, range 0-14), respectively. Among esotropes, the mean PDD at the same distances were 1.1 (SD 1.9, range 0-7), 2.1 (SD 2.6, range 0-7), 3.9 (SD 4.9, range 0-19), and 4.3 (SD 5.1, range 0-19). The percentages of exotropes with a PDD of >2.5 at 16, 14, 12, and 10 feet compared to 18 feet were 13.6% (n = 3), 13.6% (n = 3), 18.2% (n = 4), and 27.3% (n = 6), respectively. In the esotrope group, 11.8% (n = 2), 35.3% (n = 6), 47.1% (n = 8), and 47.1% (n = 8) had a PDD of >2.5 at the same distances, respectively.

Conclusion: This pilot study is the first to investigate the change in measured angle of strabismus at various non-mirrored distances from the patient to the fixation target. Our methodology defines a framework that could be used in a higher-powered study to further our understanding of the effect of room length on strabismus evaluation.

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CiteScore
1.20
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