Enhancement of the Inner Foveal Response of Young Adults with Extended-Depth-of-Focus Contact Lens for Myopia Management

Vision Pub Date : 2024-04-14 DOI:10.3390/vision8020019
A. Amorim-de-Sousa, Rute J. Macedo-de-Araújo, Paulo Fernandes, J. González-Méijome, A. Queirós
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Abstract

Background: Myopia management contact lenses have been shown to successfully decrease the rate of eye elongation in children by changing the peripheral refractive profile of the retina. Despite the efforts of the scientific community, the retinal response mechanism to defocus is still unknown. The purpose of this study was to evaluate the local electrophysiological response of the retina with a myopia control contact lens (CL) compared to a single-vision CL of the same material. Methods: The retinal electrical activity and peripheral refraction of 16 eyes (16 subjects, 27.5 ± 5.7 years, 13 females and 3 males) with myopia between −0.75 D and −6.00 D (astigmatism < 1.00 D) were assessed with two CLs (Filcon 5B): a single-vision (SV) CL and an extended-depth-of-focus (EDOF) CL used for myopia management. The peripheral refraction was assessed with an open-field WAM-5500 auto-refractometer/keratometer in four meridians separated by 45° at 2.50 m distance. The global-flash multifocal electroretinogram (gf-mfERG) was recorded with the Reti-port/scan21 (Roland Consult) using a stimulus of 61 hexagons. The implicit time (in milliseconds) and response density (RD, in nV/deg2) of the direct (DC) and induced (IC) components were used for comparison between lenses in physiological pupil conditions. Results: Although the EDOF decreased both the HCVA and the LCVA (one and two lines, respectively; p < 0.003), it still allowed a good VA. The EDOF lens induced a myopic shift in most retinal areas, with a higher and statistically significant effect on the nasal retina. No differences in the implicit times of the DC and IC components were observed between SV and EDOF. Compared with the SV, the EDOF lens showed a higher RD in the IC component in the foveal region (p = 0.032). In the remaining retinal areas, the EDOF evoked lower, non-statistically significant RD in both the DC and IC components. Conclusions: The EDOF myopia control CL enhanced the response of the inner layers of the fovea. This might suggest that, besides other mechanisms potentially involved, the central foveal retinal activity might be involved in the mechanism of myopia control with these lenses.
用焦距延长型隐形眼镜增强青少年眼窝内侧的反应以治疗近视
背景:近视控制隐形眼镜通过改变视网膜的周边屈光曲线,成功地降低了儿童眼球的伸长率。尽管科学界做出了很多努力,但视网膜对散焦的反应机制仍然未知。本研究的目的是评估配戴近视控制隐形眼镜(CL)后视网膜的局部电生理反应,并与相同材质的单视隐形眼镜进行比较。研究方法使用两种隐形眼镜(Filcon 5B)对 16 只近视度数在-0.75 D 和-6.00 D 之间(散光 < 1.00 D)的眼睛(16 名受试者,27.5 ± 5.7 岁,13 名女性和 3 名男性)的视网膜电活动和周边屈光度进行评估:一种是单视点隐形眼镜(SV),另一种是用于近视控制的延伸焦深隐形眼镜(EDOF)。在 2.50 米的距离上,使用 WAM-5500 自动屈光仪/角膜曲率计在四条相距 45°的经线上对周边屈光度进行评估。使用Reti-port/scan21(Roland Consult)记录全球闪光多焦视网膜电图(gf-mfERG),刺激物为61个六边形。直接(DC)和诱导(IC)成分的隐含时间(以毫秒为单位)和反应密度(RD,以 nV/deg2为单位)用于比较生理瞳孔条件下不同镜片之间的差异。结果:虽然 EDOF 降低了 HCVA 和 LCVA(分别为一条线和两条线;p < 0.003),但仍能获得良好的 VA。EDOF 镜片在大多数视网膜区域引起了近视偏移,对鼻腔视网膜的影响更大,且具有统计学意义。SV 和 EDOF 在 DC 和 IC 分量的隐含时间上没有差异。与 SV 相比,EDOF 镜片在眼窝区域的 IC 分量显示出更高的 RD(p = 0.032)。在其余视网膜区域,EDOF 引起的 DC 和 IC 分量的 RD 较低,但无统计学意义。结论:EDOF近视控制CL增强了眼窝内层的反应。这可能表明,除了可能涉及的其他机制外,中心眼窝视网膜活动可能也参与了这些镜片的近视控制机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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