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一种用于眼生物测量的新型非接触式光学设备。

A new non-contact optical device for ocular biometry.

作者信息

Santodomingo-Rubido J, Mallen E A H, Gilmartin B, Wolffsohn J S

机构信息

Neurosciences Research Institute, School of Life and Health Sciences, Aston University, Birmingham, UK.

出版信息

Br J Ophthalmol. 2002 Apr;86(4):458-62. doi: 10.1136/bjo.86.4.458.

Abstract

BACKGROUND

A new commercially available device (IOLMaster, Zeiss Instruments) provides high resolution non-contact measurements of axial length (using partial coherent interferometry), anterior chamber depth, and corneal radius (using image analysis). The study evaluates the validity and repeatability of these measurements and compares the findings with those obtained from instrumentation currently used in clinical practice.

METHOD

Measurements were taken on 52 subjects (104 eyes) aged 18-40 years with a range of mean spherical refractive error from +7.0 D to -9.50 D. IOLMaster measurements of anterior chamber depth and axial length were compared with A-scan applanation ultrasonography (Storz Omega) and those for corneal radius with a Javal-Schiötz keratometer (Topcon) and an EyeSys corneal videokeratoscope.

RESULTS

Axial length: the difference between IOLMaster and ultrasound measures was insignificant (0.02 (SD 0.32) mm, p = 0.47) with no bias across the range sampled (22.40-27.99 mm). Anterior chamber depth: significantly shorter depths than ultrasound were found with the IOLMaster (-0.06 (0.25) mm, p <0.02) with no bias across the range sampled (2.85-4.40 mm). Corneal radius: IOLMaster measurements matched more closely those of the keratometer than those of the videokeratoscope (mean difference -0.03 v -0.06 mm respectively), but were more variable (95% confidence 0.13 v 0.07 mm). The repeatability of all the above IOLMaster biometric measures was found to be of a high order with no significant bias across the measurement ranges sampled.

CONCLUSIONS

The validity and repeatability of measurements provided by the IOLMaster will augment future studies in ocular biometry.

摘要

背景

一种新的商用设备(IOLMaster,蔡司仪器公司)可通过部分相干干涉测量法对眼轴长度进行高分辨率非接触测量,并通过图像分析测量前房深度和角膜曲率半径。本研究评估这些测量的有效性和可重复性,并将结果与目前临床实践中使用的仪器测量结果进行比较。

方法

对52名年龄在18至40岁之间、平均球镜屈光不正范围为 +7.0 D至 -9.50 D的受试者(104只眼)进行测量。将IOLMaster测量的前房深度和眼轴长度与A超压平式超声检查(Storz Omega)进行比较,将角膜曲率半径测量结果与Javal-Schiötz角膜曲率计(拓普康)和EyeSys角膜视频角膜曲率计进行比较。

结果

眼轴长度:IOLMaster测量值与超声测量值之间的差异不显著(0.02(标准差0.32)mm,p = 0.47),在采样范围内(22.40 - 27.99 mm)无偏差。前房深度:IOLMaster测量的深度明显短于超声测量值(-0.06(0.25)mm,p <0.02),在采样范围内(2.85 - 4.40 mm)无偏差。角膜曲率半径:IOLMaster测量值与角膜曲率计测量值的匹配度比与视频角膜曲率计测量值的匹配度更高(平均差异分别为 -0.03和 -0.06 mm),但变异性更大(95%置信区间为0.13和0.07 mm)。发现上述所有IOLMaster生物测量指标的可重复性都很高,在采样测量范围内无显著偏差。

结论

IOLMaster提供的测量的有效性和可重复性将有助于未来的眼生物测量研究。

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本文引用的文献

1
Optical coherence tomography.光学相干断层扫描
J Biomed Opt. 1996 Apr;1(2):157-73. doi: 10.1117/12.231361.

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