国际眼科纵览 ›› 2026, Vol. 50 ›› Issue (4): 247-252.doi: 10.3760/cma.j.cn115500-20260417-26402

• 综述 • 上一篇    下一篇

睫状体与闭角型青光眼发病机制的关系

陈欢1  郑选力1  林海双2  王小洁1  左菁菁1  梁远波1   

  1. 1 温州医科大学附属眼视光医院 国家眼耳鼻喉疾病(眼部疾病)临床医学研究中心,浙江温州 325027;2 温州医科大学附属第二医院眼科,浙江温州 325027
  • 收稿日期:2026-04-17 出版日期:2026-08-25 发布日期:2026-08-14
  • 通讯作者: 梁远波,Email: yuanboliang@wmu.edu.cn
  • 基金资助:
    温州市科技局项目(Y20220783);温州医科大学附属眼视光医院1010项目(YN-1010SJZN202301)

Relationship between the ciliary body and the pathogenesis of angle closure glaucoma

Chen Huan1, Zheng Xuanli1, Lin Haishuang2, Wang Xiaojie1, Zuo Jingjing1, Liang Yuanbo1   

  1. 1 National Clinical Research Center for Ocular Diseases, Eye Hospital, Wenzhou Medical University, Wenzhou Zhejiang 325027, China;2 Department of Ophthalmology, the Second Affiliated Hospital of Wenzhou Medical University, Wenzhou Zhejiang 325027, China
  • Received:2026-04-17 Online:2026-08-25 Published:2026-08-14
  • Contact: Liang Yuanbo, Email: yuanboliang@wmu.edu.cn
  • Supported by:
     Wenzhou Basic Scientific Research Project (Y20220783); The 1010 Project of the Eye Hospital, Wenzhou Medical University (YN-1010SJZN202301)

摘要: 睫状体及其相邻解剖结构在原发性闭角型青光眼(primary angle closure glaucoma,PACG)的发病机制中发挥重要作用。随着超声生物显微镜等眼前节成像技术发展,睫状体前旋、睫状体-晶状体间隙狭窄及晶状体悬韧带异常等发病机制在PACG中的关键作用被逐渐揭示。本文梳理了睫状体形态学参数在疾病发生发展中的动态变化,并基于“跨晶状体压力差”假说,提出睫状体及悬韧带的形态学异常是“跨晶状体压力差”异常升高的下游生物力学结果:即从初始睫状体阻滞与跨晶状体压力差形成,发展至晶状体前移与睫状体被迫拉伸,进而导致悬韧带的力学失代偿。上述机制有助于更深层次地解析PACG的多因素发病网络,并为通过重塑睫状突形态从根本上解除睫状环阻滞、改善患者预后提供了新的理论依据。

关键词: 闭角型青光眼, 睫状体, 跨晶状体压力差

Abstract: The ciliary body and its adjacent anatomical structures play a vital role in the pathogenesis of primary angle closure glaucoma (PACG). With the development of anterior segment imaging techniques such as ultrasound biomicroscopy, the key roles of pathogenic mechanisms including ciliary body rotation, narrow cilio-lenticular space, and zonular abnormalities in PACG have been gradually revealed. This article reviews the dynamic changes in ciliary body morphological parameters during the occurrence and progression of the disease. Based on the "trans-lens pressure differential" hypothesis, it proposes that morphological abnormalities of the ciliary body and zonules are downstream biomechanical outcomes of abnormally elevated trans-lens pressure differential: specifically, the pathological process progresses from initial ciliary block and the formation of trans-lens pressure differential to anterior lens displacement and forced stretching of the ciliary body, which further results in mechanical decompensation of the zonules. The above mechanisms contribute to a deeper understanding of the multifactorial pathogenic network of PACG and provide a new theoretical basis for fundamentally relieving ciliary block and improving patient prognosis by reshaping ciliary process morphology.

Key words: Angle closure glaucoma, Ciliary body, Trans-lens pressure differential