Department of Bioengineering, University of Illinois at Chicago, Chicago, IL, 60607, USA.
Department of Ophthalmology, Antalya Training and Research Hospital, Antalya, Turkey.
Sci Rep. 2022 Aug 16;12(1):13850. doi: 10.1038/s41598-022-18061-7.
A wide-field fundus camera, which can selectively evaluate the retina and choroid, is desirable for better detection and treatment evaluation of eye diseases. Trans-palpebral illumination has been demonstrated for wide-field fundus photography, but its application for true-color retinal imaging is challenging due to the light efficiency delivered through the eyelid and sclera is highly wavelength dependent. This study is to test the feasibility of true-color retinal imaging using efficiency-balanced visible light illumination, and to validate multiple spectral imaging (MSI) of the retina and choroid. 530 nm, 625 nm, 780 nm and 970 nm light emission diodes (LED)s are used to quantitatively evaluate the spectral efficiency of the trans-palpebral illumination. In comparison with 530 nm illumination, the 625 nm, 780 nm and 970 nm light efficiencies are 30.25, 523.05, and 1238.35 times higher. The light efficiency-balanced 530 nm and 625 nm illumination control can be used to produce true-color retinal image with contrast enhancement. The 780 nm light image enhances the visibility of choroidal vasculature, and the 970 nm image is predominated by large veins in the choroid. Without the need of pharmacological pupillary dilation, a 140° eye-angle field of view (FOV) is demonstrated in a snapshot fundus image. In coordination with a fixation target, the FOV can be readily expanded over the equator of the eye to visualize vortex ampullas.
一种宽视场眼底相机,可选择性评估视网膜和脉络膜,对于更好地检测和治疗眼部疾病是理想的。经眼睑和巩膜的(trans-palpebral)透照照明已被证明可用于宽视场眼底摄影,但由于通过眼睑和巩膜传输的光效率高度依赖于波长,因此其在真彩色视网膜成像中的应用具有挑战性。本研究旨在测试使用效率平衡可见光照明进行真彩色视网膜成像的可行性,并验证视网膜和脉络膜的多光谱成像 (MSI)。530nm、625nm、780nm 和 970nm 发光二极管 (LED) 用于定量评估经眼睑照明的光谱效率。与 530nm 照明相比,625nm、780nm 和 970nm 的光效率分别高 30.25、523.05 和 1238.35 倍。平衡光效率的 530nm 和 625nm 照明控制可用于产生具有对比度增强的真彩色视网膜图像。780nm 光图像增强脉络膜血管的可见度,970nm 图像则以脉络膜中的大静脉为主导。无需药物性瞳孔扩张,即可在快照眼底图像中显示 140° 眼角视野 (FOV)。与固定目标协调使用时,FOV 可轻松扩展到眼睛的赤道以可视化涡旋壶腹。