机构地区:[1]广东省人民医院(广东省医学科学院)眼科,广州515100 [2]汕头大学医学院,515041
出 处:《中华眼底病杂志》2019年第1期3-7,共5页Chinese Journal of Ocular Fundus Diseases
基 金:国家自然科学基金(81500737);广州市科技计划项目(201607010343).
摘 要:目的观察正常人眼黄斑区血流密度变化,初步分析其与年龄的相关性。方法横断面研究。2017年6月至2018年6月在广东省人民医院眼科门诊行眼底检查的正常健康者250名250只眼纳入研究。其中,男性125名125只眼,女性125名125只眼。平均年龄(44.76±14.77)岁。其中,20~29、30~39、40~49、50~59、≥60岁均为50名50只眼。均行BCVA、裂隙灯显微镜、间接检眼镜、OCT血管成像(OCTA)检查。受检者均双眼进行检查,利用Excel生成随机数选取1只眼的数据纳入分析,其中右眼126只,左眼124只。采用频域OCTA仪对黄斑区6mm×6mm范围进行扫描。软件自动将其划分为以黄斑中心凹为中心的3个同心圆,分别是直径为1mm的中心凹区,1~3mm的旁中心凹区,3~6mm的中心凹周围区。测量黄斑区6mm范围内整体及不同分区浅层毛细血管丛(SVC)、深层毛细血管丛(DVC)血流密度以及中心凹无血管区(FAZ)300μm宽度内的血流密度(FD-300),FAZ面积、周长(PERIM)、非圆度指数(AI)以及中心凹视网膜厚度(CRT)。黄斑区血流密度、CRT、FAZ与年龄的相关性行Pearson相关性分析。结果受检眼黄斑区SVC、DVC平均血流密度分别为(51.61±2.54)%、(54.04±5.46)%,平均FD-300为(55.57±4.15)%;平均CRT、PERIM、AI分别为(285.55±12.13)μm、(2.150±0.367)mm、1.10±0.04。相关性分析结果显示,年龄与黄斑区SVC、DVC整体(r=-0.335、-0.279)、旁中心凹区(r=-0.255、-0.368)、中心凹周围区(r=-0.330、-0.269)血流密度以及FD-300(r=-0.311)均呈负相关(P<0.01),与中心凹区血流密度不相关(r=-0.071、-0.118,P=0.264、0.064);与FAZ面积、PERIM、AI均不相关(r=-0.070、-0.055、0.074,P=0.267、0.385、0.142);与平均CRT呈负相关(r=-0.217,P<0.01);与中心凹区CRT无相关(r=0.115,P=0.068)。CRT与中心凹区SVC、DVC血流密度呈正相关(r=0.715、0.653,P<0.01),而与FAZ面积呈负相关(r=-0.669,P<0.01)。结论正常眼黄斑区毛细血管血流密度随年龄增长而下降。Objective To observe the changes of blood flow density in the macular area of normal eyes, and to analyze its correlation with age. Methods A cross-sectional study. Two hundred and fifty normal healthy subjects (125 males and 125 females, aged 44.76±14.77) in routine ophthalmologic examination at the Department of Ophtalmology of Guangdong Provincial People’s Hospital during June 2017 to June 2018 were enrolled. Among them, 20 to 29, 30 to 39, 40 to 49, 50 to 59, and ≥ 60 years old were 50 subjects (50 eyes) in each. BCVA, slit lamp microscope, indirect ophthalmoscope, OCT angiography (OCTA) examinations were conducted for all eyes. The subjects were examined by both eyes, and the data of 1 eye was selected by EXCEL to generate random numbers, including 126 right eyes and 124 left eyes. The range of 6 mm × 6 mm in the macular area was scanned using a frequency domain OCTA instrument. The software automatically divides it into three concentric circles centered on the macular fovea, which were foveal area with a diameter of 1 mm, parafoveal area of 1 to 3 mm, and foveal peripheral area of 3 to 6 mm. The blood flow density of superficial capillary vessel, deep capillary vessel and foveal avascular area (FAZ) within a 300 μm width (FD-300), FAZ area, perimeter (PERIM), non-circularity index, center retinal thickness (CRT) were measured. The relationship between the blood flow density in macula, CRT, FAZ and age was analyzed by Pearson correlation analysis. Results The mean blood flow density of superficial capillary vessel and deep capillary vessel were (51.61±2.54)% and (54.04±5.46)%, respectively. The average FD-300, CRT, PERIM and non-circularity index were (285.55±12.13) μm, (2.150±0.367) mm, 1.10±0.04, respectively. The relevance of the results showed that the age was negatively correlated with the blood flow density of whole area (r=?0.335, ?0.279;P<0.01), parafoveal area (r=?0.255, ?0.368;P<0.01), foveal peripheral area (r=?0.330, ?0.269;P<0.01) in superficial capillary vessel and deep capillary v
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