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近视性屈光参差:眼部特征及病因学考量

Myopic anisometropia: ocular characteristics and aetiological considerations.

作者信息

Vincent Stephen J, Collins Michael J, Read Scott A, Carney Leo G

机构信息

Contact Lens and Visual Optics Laboratory, School of Optometry and Vision Science, Queensland University of Technology, Brisbane, Queensland, Australia.

出版信息

Clin Exp Optom. 2014 Jul;97(4):291-307. doi: 10.1111/cxo.12171.

Abstract

Anisometropia represents a unique example of ocular development, where the two eyes of an individual, with an identical genetic background and seemingly subject to identical environmental influences, can grow asymmetrically to produce significantly different refractive errors. This review provides an overview of the research examining myopic anisometropia, the ocular characteristics underlying the condition and the potential aetiological factors involved. Various mechanical factors are discussed, including corneal structure, intraocular pressure and forces generated during near work that may contribute to development of anisomyopia. Potential visually guided mechanisms of unequal ocular growth are also explored, including the influence of astigmatism, accommodation, higher-order aberrations and the choroidal response to altered visual experience. The association between binocular vision, ocular dominance and asymmetric refraction is also considered, along with a review of the genetic contribution to the aetiology of myopic anisometropia. Despite a significant amount of research into the biomechanical, structural and optical characteristics of anisometropic eyes, there is still no unifying theory, which adequately explains how two eyes within the same visual system grow to different endpoints.

摘要

屈光参差是眼球发育的一个独特例子,在这种情况下,具有相同遗传背景且看似受到相同环境影响的个体的两只眼睛,可能会不对称生长,从而产生显著不同的屈光不正。这篇综述概述了关于近视性屈光参差的研究、该病症的眼部特征以及潜在的病因学因素。文中讨论了各种机械因素,包括角膜结构、眼压以及近距离工作时产生的力,这些因素可能导致屈光参差的发展。还探讨了潜在的视觉引导性双眼不等长生长机制,包括散光、调节、高阶像差以及脉络膜对视觉体验改变的反应的影响。文中还考虑了双眼视觉、眼优势和不对称屈光之间的关联,以及对近视性屈光参差病因学的遗传贡献的综述。尽管对屈光参差性眼睛的生物力学、结构和光学特征进行了大量研究,但仍然没有一个统一的理论能够充分解释同一视觉系统中的两只眼睛是如何生长到不同终点的。

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