Graduate School of Integrated Frontier Sciences, Kyushu University, Fukuoka, Japan.
Research Fellow of the Japan Society for the Promotion of Science, Fukuoka, Japan.
Sci Rep. 2020 Oct 5;10(1):16445. doi: 10.1038/s41598-020-73541-y.
A method for rapid and objective assessment of ocular lens density and transmittance is needed for research and clinical practice. The aim of this study was to determine whether the Purkinje image-based technique can be used for objective and accurate quantification of spectral density and transmittance of ocular media (the mainly crystalline lens) in visible light. Twenty-six individuals (10 young, 9 middle-aged and 7 older individuals) participated in this study. Spectral lens density was evaluated by detecting the intensity of the IVth Purkinje image for different wavelengths. Subsequently, optical density index (ODI), the area under the curve in the lens density spectrum, was calculated and ODIs were compared with clinical lens opacification scales assessed subjectively using a slit lamp. Spectral lens transmittance was estimated from the lens density spectrum. Lens densities were higher in the short wavelength region of the visible spectrum across all age groups. ODI was highly correlated with the clinical opacification scale, while lens transmittance decreased with aging. Our results showed that spectral transmittance of the human crystalline lens can be easily estimated from optical density spectra evaluated objectively and rapidly using the Purkinje image-based technique. Our results provide clinicians and scientists with an accurate, rapid and objective technique for quantification of lens transmittance.
需要一种快速、客观的评估眼晶状体密度和透光率的方法,用于研究和临床实践。本研究旨在确定基于普尔金耶像的技术是否可用于客观、准确地量化可见光中眼媒质(主要是晶状体)的光谱密度和透光率。26 名个体(10 名年轻人、9 名中年人、7 名老年人)参与了这项研究。通过检测不同波长的第 IV 个普尔金耶像的强度来评估光谱晶状体密度。随后,计算光学密度指数(ODI),即晶状体密度光谱中的曲线下面积,并将 ODI 与使用裂隙灯主观评估的临床晶状体混浊量表进行比较。从晶状体密度光谱中估计光谱晶状体透光率。在所有年龄段,短波长可见光区域的晶状体密度都较高。ODI 与临床混浊量表高度相关,而晶状体透光率随年龄增长而降低。我们的结果表明,基于普尔金耶像的技术可以快速、客观地评估光学密度谱,从而轻松估计人晶状体的光谱透光率。我们的结果为临床医生和科学家提供了一种准确、快速、客观的技术,用于定量评估晶状体透光率。