de Tomas Martín, Szeps Abel, Martín Gabriel, Suárez Juan Manuel, Atchison David A, Rozema Jos J, Iribarren Rafael
International Optics and Ophthalmology, Buenos Aires, Argentina.
Department of Ophthalmology, Posadas Hospital Buenos Aires, Buenos Aires, Argentina.
Ophthalmic Physiol Opt. 2024 Jan;44(1):214-218. doi: 10.1111/opo.13228. Epub 2023 Aug 29.
To analyse ocular coherence tomography (OCT) images of the retinal shadows caused by defocus and diffusion optics spectacles.
One eye was fitted successively with the Hoya Defocus Incorporated Multiple Segments (DIMS) spectacle lens, two variations of the +3.50 D peripheral add spectacle (DEFOCUS) and the low-contrast dot lens (Diffusion Optics Multiple Segments, DOMS); each at a vertex distance of 12 mm. Simultaneously, a retinal image of the macular region with central fixation was obtained using infrared OCT. The corneal power and intraocular distances were determined using an optical biometer.
The retinal images for the DIMS and DOMS lenses showed patterns of obvious retinal shadows in the periphery, while the central 10-11° remained clear. The DEFOCUS lens produced a darkened peripheral area. Dividing the size of the retinal pattern, measured with the calliper of the OCT software, by the actual size on the spectacle lens gave a magnification of -0.57 times. This is consistent with the incoming OCT beam being imaged to a position approximately 31 mm beyond the front of the eye. [Correction added on 26 October 2023 after first online publication: The preceding paragraph was corrected.] CONCLUSION: With device-specific correction, retinal OCT images can help visualise the regions affected by the defocus or lowered contrast induced by myopia control spectacles. This is of potential value for improving myopia therapies.
分析由散焦和扩散光学眼镜引起的视网膜阴影的光学相干断层扫描(OCT)图像。
一只眼睛先后佩戴Hoya散焦合并多段式(DIMS)眼镜镜片、+3.50 D周边附加眼镜(DEFOCUS)的两种变体以及低对比度点状镜片(扩散光学多段式,DOMS);每种镜片的顶点距离均为12 mm。同时,使用红外OCT获取黄斑区中心注视的视网膜图像。使用光学生物测量仪测定角膜屈光力和眼内距离。
DIMS和DOMS镜片的视网膜图像在外围显示出明显的视网膜阴影模式,而中心10 - 11°区域保持清晰。DEFOCUS镜片使周边区域变暗。用OCT软件的卡尺测量视网膜图案的大小,再除以眼镜镜片上的实际大小,得到放大倍数为 -0.57倍。这与进入的OCT光束成像到眼睛前方约31 mm处的位置一致。[首次在线发表后于2023年10月26日添加的更正:上一段已更正。]结论:通过特定设备校正,视网膜OCT图像有助于可视化受近视控制眼镜引起的散焦或对比度降低影响的区域。这对改善近视治疗具有潜在价值。