国际眼科纵览 ›› 2026, Vol. 50 ›› Issue (4): 297-301.doi: 10.3760/cma.j.cn115500-20260212-26410

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儿童青少年近视进展中视盘和视网膜结构及微循环的变化特征

杨雅童   李思雨   张向荣   

  1. 深圳市龙华区人民医院眼科,深圳 518109
  • 收稿日期:2026-02-12 出版日期:2026-08-25 发布日期:2026-08-14
  • 通讯作者: 张向荣,Email:beiercute@sohu.com
  • 基金资助:
    深圳市龙华区医疗卫生机构区级科研项目(2023028)

Evolutionary characteristics of optic disc and retinal structure and microcirculation in the progression of myopia in children and adolescents

Yang Yatong, Li Siyu, Zhang Xiangrong   

  1. Department of Ophthalmology, People's Hospital of Longhua Shenzhen, Shenzhen 518109, China
  • Received:2026-02-12 Online:2026-08-25 Published:2026-08-14
  • Contact: Zhang Xiangrong, Email: beiercute@sohu.com
  • Supported by:
    The Scientific Research Projects of Medical and Health Institutions of Longhua District, Shenzhen (2023028)

摘要: 近视进展不仅是眼轴的延长,更伴随着视盘和视网膜解剖形态及微循环的特异性重塑。视盘椭圆指数和倾斜比随着近视程度加深而显著增加,视盘面积的测量需考虑光学放大效应的影响。视盘周围萎缩区域随眼轴拉长持续增宽,可作为病理性近视的早期监测指标。在视网膜层面,高度近视人群黄斑中心凹厚度显著增厚,但外层视网膜厚度则较薄。在微循环方面,视盘及视盘旁区域血流灌注随近视进展而降低,但是视网膜脉络膜微循环血流密度变化规律尚需进一步证实。整合这些特征有助于建立精准近视监控体系,为青少年近视防控提供关键依据。

关键词: 近视, 儿童青少年, 视盘形态, 视网膜结构, 微循环

Abstract: Myopia progression involves more than just axial elongation. It is accompanied by specific remodeling of the optic disc, retinal anatomy, and microcirculation. As myopia worsens, the optic disc ovality index and tilt ratio increase significantly. The measurement of optic disc area must account for the influence of ocular magnification effects. The peripapillary atrophy zone widens as the axial length increases, serving as an early monitoring indicator for pathological myopia. Regarding the retina, the foveal thickness is significantly greater in highly myopic individuals, while the outer retinal thickness is thinner. In terms of microcirculation, blood perfusion in the optic disc and parapapillary areas decreases as myopia progresses. However, the specific patterns of blood flow density changes in the retinal and choroidal microcirculation require further confirmation. Integrating these features is essential for building a precise monitoring system for myopia prevention and control in youth.

Key words: Myopia, Children and adolescents, Optic disc morphology, Retinal structure, Microcirculation