Krogsaa B, Fledelius H, Larsen J, Lund-Andersen H
Acta Ophthalmol (Copenh). 1984 Apr;62(2):274-89. doi: 10.1111/j.1755-3768.1984.tb08404.x.
The optical principles of slit-lamp fluorophotometry are analysed by aid of a mathematical model of the optical system. The analysis forms the theoretical basis for a slit-lamp technique called photometric oculometry, which makes possible an estimation of intraocular axial distances and axial length. The technique is based on a calculation--by aid of a mathematical model of the eye--of the ratio between intraocular movement of the slit-lamp focal plane and corresponding movement of the slit-lamp. Intraocular axial distances can be calculated by aid of this ratio and a direct measurement of the slit-lamp movement when the focal plane is moved in the optical axis from retina to cornea. These items are prerequisites for a quantitative determination of the blood-retinal barrier permeability to fluorescein during vitreous fluorophotometry.
借助光学系统的数学模型分析了裂隙灯荧光光度法的光学原理。该分析构成了一种名为光度眼测量法的裂隙灯技术的理论基础,这种技术使得估算眼内轴向距离和眼轴长度成为可能。该技术基于借助眼睛的数学模型计算裂隙灯焦平面的眼内移动与裂隙灯相应移动之间的比率。当焦平面在光轴上从视网膜移动到角膜时,借助该比率和裂隙灯移动的直接测量值,可以计算眼内轴向距离。这些条件是在玻璃体荧光光度法期间定量测定血视网膜屏障对荧光素的通透性的先决条件。