van den Berg T J, Felius J
Department of Medical Physics and Informatics, University of Amsterdam, The Netherlands.
Invest Ophthalmol Vis Sci. 1995 Feb;36(2):322-9.
To study the relationship between subjective lens color as observed with slit lamp biomicroscopy and spectral transmittance of the lens. To propose a model for this relationship to derive quantitative information on lens pigmentation from slit lamp observation.
Twenty-nine normal lenses, from donors aged 14 to 86 years, were used. The fraction of light transmitted from a narrow beam was measured as function of wavelength. The spectra were fitted with the one-parameter TL model of Pokorny et al. The relationship between this parameter and the color grading from Chylack et al. (lens opacity classification system III nuclear color score) was established.
After slight adaptation of the TL model, the shapes of the transmittance spectra corresponded closely to the TL model (average residual error 0.05 log units). Log transmittance and lens opacity classification system nuclear color score were closely related (r = 0.90, 0.77, and 0.55 for 400, 500, and 602 nm, respectively).
A mathematical relationship between TL parameter and lens opacity classification system nuclear color score could be established to predict lens transmittance from lens opacity classification system nuclear color score. This relationship was successful in predicting the correction for lens absorption needed in blue-on-yellow perimetry.
研究裂隙灯生物显微镜下观察到的晶状体主观颜色与晶状体光谱透射率之间的关系。提出这种关系的模型,以便从裂隙灯观察中获取有关晶状体色素沉着的定量信息。
使用了29个来自14至86岁供体的正常晶状体。测量窄光束透射光的比例作为波长的函数。光谱用Pokorny等人的单参数TL模型拟合。建立了该参数与Chylack等人的颜色分级(晶状体混浊分类系统III核颜色评分)之间的关系。
对TL模型进行轻微调整后,透射光谱的形状与TL模型密切对应(平均残余误差为0.05对数单位)。对数透射率与晶状体混浊分类系统核颜色评分密切相关(400、500和602nm处的r分别为0.90、0.77和0.55)。
可以建立TL参数与晶状体混浊分类系统核颜色评分之间的数学关系,以从晶状体混浊分类系统核颜色评分预测晶状体透射率。这种关系成功地预测了蓝黄视野检查中所需的晶状体吸收校正。