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使用共焦扫描激光眼科显微镜进行静态视网膜成像时的调节。

Accommodation during static retinal imaging with a confocal scanning laser ophthalmoscope.

作者信息

Kelly John P, Seibel Eric J

机构信息

Division of Ophthalmology, Children's Hospital and Regional Medical Center, Seattle, Washington 98105-0371, USA.

出版信息

Ophthalmology. 2007 Jun;114(6):1205-11. doi: 10.1016/j.ophtha.2006.08.047.

DOI:10.1016/j.ophtha.2006.08.047
PMID:17544780
Abstract

PURPOSE

Accommodation of the eye can adversely affect optical tomography of the retina using a confocal scanning laser ophthalmoscope (cSLO). This study measured the dynamic accommodative response of young adult eyes while acquiring static retinal images with a cSLO without cycloplegia and also examined whether a scanned fixation target improves stability of accommodation.

DESIGN

Experimental study.

PARTICIPANTS

Four eyes of 4 controls whose ages ranged from 24 to 35 years.

METHODS

Dynamic accommodation was measured by an infrared autorefractor during static cSLO imaging with a fixation target, without a target, while in darkness, and while viewing a Snellen chart at 20-feet distance.

MAIN OUTCOME MEASURES

Mean accommodation across viewing conditions and rate of change of accommodation (velocity).

RESULTS

Accommodation significantly increased in amplitude and in variability during imaging with the cSLO. Average peak velocity of accommodation was 1.37 diopters (D)/second, with a maximum of 2.27 D/second. Presenting a fixation target in the cSLO did not decrease accommodation but increased accommodation velocity in 3 of 4 subjects.

CONCLUSION

Accommodation dynamically changes during acquisition of retinal images with a cSLO. Concurrent scanning of a visible target did not improve stability of accommodation reliably. Potential factors affecting accommodation include depth of focus (DOF), use of monochromatic stimuli, and nearby cues. Using the model eye, the error induced by accommodation is about 491 mum/second, with a maximum of 813 mum/second. In terms of the time to acquire individual optical sections, these estimates are consistent with previous reports of increased variability of topographic measurements in nondilated eyes.

摘要

目的

眼睛的调节功能可能会对使用共焦扫描激光检眼镜(cSLO)进行的视网膜光学断层扫描产生不利影响。本研究在未使用睫状肌麻痹剂的情况下,使用cSLO获取静态视网膜图像时,测量了年轻成年人眼睛的动态调节反应,并且还检查了扫描的注视目标是否能提高调节的稳定性。

设计

实验研究。

参与者

4名年龄在24至35岁之间的对照者的4只眼睛。

方法

在使用注视目标、不使用目标、处于黑暗环境以及观看20英尺距离的斯内伦视力表时,通过红外自动验光仪在静态cSLO成像过程中测量动态调节。

主要观察指标

不同观看条件下的平均调节度和调节变化率(速度)。

结果

在使用cSLO成像期间,调节幅度和变异性显著增加。调节的平均峰值速度为1.37屈光度(D)/秒,最大值为2.27 D/秒。在cSLO中呈现注视目标并没有减少调节,但在4名受试者中的3名中增加了调节速度。

结论

在使用cSLO获取视网膜图像期间,调节会动态变化。同时扫描可见目标并不能可靠地提高调节的稳定性。影响调节的潜在因素包括焦深(DOF)、单色刺激的使用和附近线索。使用模型眼,调节引起的误差约为491微米/秒,最大值为813微米/秒。就获取单个光学切片的时间而言,这些估计与先前关于未散瞳眼睛地形图测量变异性增加的报告一致。

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