医学
青光眼
眼科
开角型青光眼
阶段(地层学)
小学生
验光服务
小学(天文学)
瞳孔反应
光学
古生物学
物理
天文
生物
作者
Serdar Bayraktar,Gözde Hondur,Mehmet Ali Şekeroğlu,Emine Şen
出处
期刊:Journal of Glaucoma
[Ovid Technologies (Wolters Kluwer)]
日期:2023-03-22
卷期号:32 (7): e90-e94
被引量:2
标识
DOI:10.1097/ijg.0000000000002212
摘要
The dynamic parameters of the pupil, evaluated with an automated pupillometry device, differ in newly diagnosed early-stage primary open angle glaucoma (POAG) patients compared with healthy individuals, and this may guide us in early diagnosis and follow-up of glaucoma.To quantitatively determine static and dynamic pupillary functions in treatment-naive, newly diagnosed early-stage POAG patients and compare them with healthy controls.Forty eye of forty subjects with early POAG were compared with 71 eye of 71 age- matched and sex-matched healthy controls in terms of static and dynamic pupillary functions in this prospective and cross-sectional study. Static and dynamic pupillary functions were obtained with an automated pupillometry device. Static pupillometry parameters are pupil diameter (mm) in high photopic (100 cd/m 2 ), low photopic (10 cd/m 2 ), mesopic (1 cd/m 2 ), and scotopic (0.1 cd/m 2 ) light conditions. Dynamic pupillometry parameters are resting diameter (mm), amplitude (mm), latency (ms), duration (ms), and velocity (mm/s) of pupil contraction and dilation. Measured data were evaluated and compared with t test for independent groups.Duration of pupil contraction was lower, ( P =0.04) latency of pupil dilation time was longer, ( P =0.03) duration of pupil dilation was shorter ( P =0.04) and velocity of pupil dilation was lower ( P =0.02) in the POAG group. There was no significant difference between the 2 groups in terms of static pupillometry characteristics and the resting pupil diameter ( P >0.05 for all values).These results suggest that dynamic pupillary light responses may be affected in early-stage POAG compared with the normal population. Longitudinal studies with larger series are needed to better understand the quantitative changes in dynamic pupillometry functions in early-stage POAG.
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