Myopia Research Lab, Prof. Brien Holden Eye Research Centre, Brien Holden Institute of Optometry and Vision Sciences, Kallam Anji Reddy Campus, L V Prasad Eye Institute, Hyderabad, India.
Caring Futures Institute, College of Nursing and Health Sciences, Optometry and Vision Science, Flinders University, Adelaide, South Australia, Australia.
Doc Ophthalmol. 2022 Oct;145(2):77-95. doi: 10.1007/s10633-021-09857-5. Epub 2021 Nov 17.
The stretching of a myopic eye is associated with several structural and functional changes in the retina and posterior segment of the eye. Recent research highlights the role of retinal signaling in ocular growth. Evidence from studies conducted on animal models and humans suggests that visual mechanisms regulating refractive development are primarily localized at the retina and that the visual signals from the retinal periphery are also critical for visually guided eye growth. Therefore, it is important to study the structural and functional changes in the retina in relation to refractive errors. This review will specifically focus on electroretinogram (ERG) changes in myopia and their implications in understanding the nature of retinal functioning in myopic eyes. Based on the available literature, we will discuss the fundamentals of retinal neurophysiology in the regulation of vision-dependent ocular growth, findings from various studies that investigated global and localized retinal functions in myopia using various types of ERGs.
近视眼的拉伸与视网膜和眼球后部的几种结构和功能变化有关。最近的研究强调了视网膜信号在眼球生长中的作用。来自动物模型和人类研究的证据表明,调节屈光发育的视觉机制主要位于视网膜,视网膜周边的视觉信号对视觉引导的眼球生长也很重要。因此,研究与屈光不正相关的视网膜结构和功能变化非常重要。这篇综述将特别关注近视的视网膜电图 (ERG) 变化及其对理解近视眼中视网膜功能本质的意义。根据现有文献,我们将讨论视网膜神经生理学在视觉依赖性眼球生长调节中的基础,以及使用各种类型的 ERG 研究近视时全局和局部视网膜功能的各种研究结果。