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衰老对睫状肌的影响及其与老花眼的潜在关系:文献综述

The effect of aging on the ciliary muscle and its potential relationship with presbyopia: a literature review.

作者信息

Zuo Hangjia, Cheng Hong, Lin Meiting, Gao Xiang, Xiang Yongguo, Zhang Tong, Gao Ning, Du Miaomiao, Chen Yonglin, Zheng Shijie, Huang Rongxi, Wan Wenjuan, Hu Ke

机构信息

Chongqing Medical University, Chongqing, PR China.

The First Affiliated Hospital of Chongqing Medical University, Chongqing Key Laboratory of Prevention and Treatment on Major Blinding Diseases, Chongqing Eye Institute, Chongqing Branch (Municipality Division) of National Clinical Research Center for Ocular Diseases, Chongqing, PR China.

出版信息

PeerJ. 2024 Dec 24;12:e18437. doi: 10.7717/peerj.18437. eCollection 2024.

Abstract

BACKGROUND

The ciliary muscle is known to play a part in presbyopia, but the mechanism has not received a comprehensive review, which this study aims to achieve. We examined relevant articles published from 1975 through 2022 that explored various properties of the muscle and related tissues in humans and rhesus monkeys. These properties include geometry, elasticity, rigidity, and composition, and were studied using a range of imaging technologies, computer models, and surgical methods. We identified a notable age-related displacement of the ciliary muscle apex that is characterized by anterior and medial shifts, and hypothesized to be primarily attributed to the accrual of connective tissue and tension exerted by the thickening lens. Other factors could also contribute to the movement, particularly the "inward bowing" of the sclera. Another noteworthy observation is that while the ciliary muscle experiences increasing constraint with advancing age due to adjacent anatomical structures, its contractile capacity remains unaltered, alongside the sustained constancy in both the concentration of muscarinic receptors and their binding affinity. Overall, more studies on human ciliary muscle are needed, as it ages differently from that of monkeys' ciliary muscle. These studies should explore other perspectives, including those regarding changes in the physical properties of the tissue and its relationship with other connected tissues.

METHODOLOGY

This literature review utilized a systematic methodology to identify and analyze pertinent studies of the presbyopia and ciliary muscles. The approach encompassed a thorough examination of available literature across different academic databases, such as PubMed, Embase, and Cochrane Library.

RESULTS

Many studies have identified age-related thickening in the ciliary muscle and its potential causes, including the heightened deposition of connective tissues and traction exerted by the thickening lens. Notably, these inquiries culminated in the formulation of a geometric theory positing that the morphology of the ciliary muscle and its spatial relationship with adjacent structures exert pivotal influence over the tension exerted on zonular fibers.

CONCLUSION

The decline in the accommodative response of the muscle is prevalent in advanced age, with reduced mobility likely attributable to the increased stiffness of the Bruch's Membrane-Choroid Complex (BMCC), where the tendons of the ciliary muscle insert, as well as the thickening and stiffening of the lens. Importantly, the ciliary muscle forces do not change with age.

摘要

背景

已知睫状肌在老花眼中起作用,但其机制尚未得到全面综述,本研究旨在实现这一目标。我们查阅了1975年至2022年发表的相关文章,这些文章探讨了人类和恒河猴中该肌肉及相关组织的各种特性。这些特性包括几何形状、弹性、硬度和组成,并使用了一系列成像技术、计算机模型和手术方法进行研究。我们发现睫状肌顶点存在明显的与年龄相关的移位,其特征是向前和向内侧移位,并推测这主要归因于结缔组织的积累以及增厚晶状体施加的张力。其他因素也可能导致这种移位,特别是巩膜的“向内弯曲”。另一个值得注意的观察结果是,虽然随着年龄的增长,睫状肌由于相邻解剖结构而受到越来越大的限制,但其收缩能力保持不变,毒蕈碱受体的浓度及其结合亲和力也持续恒定。总体而言,由于人类睫状肌与猴子睫状肌的老化方式不同,因此需要对人类睫状肌进行更多研究。这些研究应探索其他方面,包括组织物理特性的变化及其与其他相连组织的关系。

方法

本综述采用系统方法来识别和分析老花眼和睫状肌的相关研究。该方法包括全面检查不同学术数据库(如PubMed、Embase和Cochrane图书馆)中的现有文献。

结果

许多研究已经确定了睫状肌与年龄相关的增厚及其潜在原因,包括结缔组织沉积增加和增厚晶状体施加的牵引力。值得注意的是,这些研究最终形成了一种几何理论,该理论认为睫状肌的形态及其与相邻结构的空间关系对施加在悬韧带纤维上的张力具有关键影响。

结论

在老年时,肌肉调节反应的下降很普遍,活动能力降低可能归因于睫状肌肌腱插入处的布鲁赫膜 - 脉络膜复合体(BMCC)硬度增加,以及晶状体的增厚和硬化。重要的是,睫状肌力量不会随年龄变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4b8/11674140/abbf16680ee2/peerj-12-18437-g001.jpg

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