Department of Ophthalmology, Beijing Luhe Hospital, Capital Medical University, Beijing, China.
Department of Ophthalmology, Dalian Women and Children's Medical Group, Dalian, China.
J Biophotonics. 2023 Sep;16(9):e202200390. doi: 10.1002/jbio.202200390. Epub 2023 Jun 10.
To investigate the alterations in the retinal vasculature and microstructure in dry-type high myopia.
One hundred and eighty-nine dry-type high myopia eyes were classified into three groups. Group 1 consisted of 86 eyes with no myopic retinal degenerative lesion (C0). Group 2 consisted of 71 eyes with tessellated fundus (C1). Group 3 consisted of 32 eyes with diffuse chorioretinal atrophy (C2). Retinal vascular density and retinal thickness were measured with optical coherence tomography angiography. The scanning area was a 3 × 3 mm ring with the fovea of the macular. All data were analyzed with the SPSS 23.0 by one-way ANOVA test among comparison groups. Pearson's correlation analysis was used to determine the relations among measurements. Univariate linear regression showed a correlation between the vascular densities and retinal thicknesses.
The microvessel density significantly decreased and significant thinning of the superior and temporal macular thickness in the C2 group. The vascular densities of macular decreased significantly with the increase of axial length (AL) and refractive diopter in the C2 group. The retinal thicknesses of the macular fovea increased significantly with the increase of vascular densities in the C0 group and C1 group.
The impairment of retinal microstructure is more likely related to reduced oxygen and nutrients due to microvessel density decreases.
探讨干性近视的视网膜血管和微观结构的改变。
将 189 只干性近视眼分为三组。第 1 组为 86 只无近视性视网膜退行性病变的眼(C0)。第 2 组为 71 只棋盘状眼底的眼(C1)。第 3 组为 32 只弥漫性脉络膜视网膜萎缩的眼(C2)。使用光学相干断层扫描血管造影测量视网膜血管密度和视网膜厚度。扫描区域为黄斑中心凹的 3×3mm 环。采用 SPSS 23.0 进行单因素方差分析,对比较组间的数据进行分析。采用 Pearson 相关分析确定各测量值之间的关系。单变量线性回归显示血管密度与视网膜厚度之间存在相关性。
C2 组的微血管密度显著降低,上、颞侧黄斑厚度显著变薄。C2 组黄斑区血管密度随眼轴长度(AL)和屈光度数的增加而显著降低。C0 组和 C1 组黄斑中心凹视网膜厚度随血管密度的增加而显著增加。
视网膜微观结构的损伤更可能与由于微血管密度降低导致的氧气和营养物质减少有关。