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使用改良的日本新光SRW-5000自动验光仪同时连续记录调节和瞳孔大小。

Simultaneous continuous recording of accommodation and pupil size using the modified Shin-Nippon SRW-5000 autorefractor.

作者信息

Wolffsohn J S, O'Donnell C, Charman W N, Gilmartin B

机构信息

Neurosciences Research Institute, Aston University, Birmingham, UK.

出版信息

Ophthalmic Physiol Opt. 2004 Mar;24(2):142-7. doi: 10.1111/j.1475-1313.2004.00186.x.

Abstract

The internal optics of the recent models of the Shin-Nippon SRW-5000 autorefractor (also marketed as the Grand Seiko WV-500) have been modified by the manufacturer so that the infrared measurement ring has been replaced by pairs of horizontal and vertical infrared bars, on either side of fixation. The binocular, open field-of-view, allowing the accommodative state to be objectively monitored while a natural environment is viewed, has made the SRW-5000 a valuable tool in further understanding the nature of the oculomotor response. It is shown that the root-mean-square of model eye measures was least (0.017 +/- 0.002 D) when the separation of the horizontal measurement bars were averaged twice. The separation of the horizontal bars changes by 3.59 pixels/dioptre (r2 = 0.99), allowing continuous on-line analysis of the refractive state at up to 60 Hz temporal resolution to an accuracy of <0.001 D, with pupils >3 mm. The pupil edge is not obscured in the diagonal axis by the measurement bars, unlike the ring of the original optics, so in the newer model pupil size can be measured simultaneously at the same rate with a resolution of <0.001 mm. The measurements of accommodation and pupil size are relatively unaffected by eccentricity of viewing up to +/-10 degrees from the visual axis and instrument focusing inaccuracies over a range of 10 mm towards the eye and 5 mm away from the eye. The resolution and temporal properties of the analysis are therefore ideal for the simultaneous measurement of dynamic accommodation and pupil responses.

摘要

日本新日本SRW - 5000自动验光仪(也作为精工WV - 500销售)的最新款内部光学结构已由制造商进行了改进,使得红外测量环被固定点两侧的水平和垂直红外条对所取代。双目、开放视野,在观察自然环境的同时能够客观监测调节状态,这使得SRW - 5000成为进一步了解动眼反应本质的宝贵工具。结果表明,当水平测量条的间距平均两次时,模型眼测量的均方根最小(0.017 +/- 0.002 D)。水平条的间距变化为3.59像素/屈光度(r2 = 0.99),对于瞳孔直径大于3 mm的情况,能够以高达60 Hz的时间分辨率对屈光状态进行连续在线分析,精度可达<0.001 D。与原始光学结构的环不同,测量条在对角轴上不会遮挡瞳孔边缘,因此在较新的型号中,可以以<0.001 mm的分辨率同时以相同速率测量瞳孔大小。在从视轴向上或向下10度的偏心视角范围内以及仪器在朝向眼睛10 mm和远离眼睛5 mm的范围内聚焦不准确的情况下,调节和瞳孔大小的测量相对不受影响。因此,分析的分辨率和时间特性非常适合同时测量动态调节和瞳孔反应。

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