ArticleScientific reports2020
A Purkinje image-based system for an assessment of the density and transmittance spectra of the human crystalline lens in vivo.
Article in Scientific reports, 2020. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 7 papers.
What it found
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Who cites it
7 citing papers in PubMed, 18 citations in OpenAlex.
- Cortical excitability is affected by light exposure - Distinct effects in adolescents and young adults.Neurobiology of sleep and circadian rhythms · 2026Article
- Contributions from light level and spectral content on refractive development in young rabbits.International journal of ophthalmology · 2025Article
- Observational
- Age-related changes in geometry and transparency of human crystalline lens revealed by optical signal discontinuity zones in swept-source OCT images.Eye and vision (London, England) · 2023Article
- Review on age-related differences in non-visual effects of light: melatonin suppression, circadian phase shift and pupillary light reflex in children to older adults.Journal of physiological anthropology · 2023Review
- Complexity of crystalline lens wobbling investigated by means of combined mechanical and optical simulations.Biomedical optics express · 2023Article
- Age-related changes of lens thickness and density in different age phases.International journal of ophthalmology · 2022Article
Corrections and comments
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Authors and funding
7 authors at 5 institutions in 3 countries.
Funding
No grant is acknowledged in the PubMed record.
Abstract
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.
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