Gao Qianying, Chen Xiang, Ge Jian, Liu Yongji, Jiang Zhaoxin, Lin Zhi, Liu Yaqin
State Key Laboratory of Ophthalmology, Zhongshan Ophthalmic Center, Sun Yat-sen University, Guangzhou, China.
Invest Ophthalmol Vis Sci. 2009 Jul;50(7):3529-34. doi: 10.1167/iovs.08-2802. Epub 2009 Mar 5.
To determine and compare the refractive shifts based on Gullstrand-Emsley and Liou-Brennan schematic eyes after filling them with four selected artificial vitreous substitutes: silicone oil, heavy silicone oil, hydrogels, and encapsuled balanced salt solution.
The optical constants of artificial vitreous body-filled eyes were calculated based on Gullstrand-Emsley and Liou-Brennan schematic eyes with accommodation relaxed. The theoretical refractive shifts in these two models were compared in pars plana vitrectomy (PPV), PPV plus lensectomized and PPV plus intraocular lens (IOL) eyes after four artificial vitreous tamponades.
The Gullstrand-Emsley schematic eye shows refractive shifts of +8.710, -4.544, +1.136, and -0.338 D in PPV eyes; +11.044, +20.332, +16.351, and +17.413 D in PPV plus lensectomized eyes; and the need for IOL powers of +22.195, +22.366, +22.292, and +22.312 D in PPV plus IOL eyes in silicone oil, heavy silicone oil, hydrogels, and encapsuled balanced salt solution tamponade eyes, respectively. Similarly, the Liou-Brennan schematic eye induced shifts of +6.260, -3.266, +0.817, and -0.272 D in PPV eyes; +13.181, +20.654, +17.451, and +18.305 D in PPV plus lensectomized eyes; and the need IOL powers of +13.522, +23.767, +19.389, and +20.558 D in PPV plus IOL eyes, respectively.
The Gullstrand-Emsley schematic eye is a convenient and accurate model for predicting refractive shifts for hydrogels and encapsuled balanced salt solution substitutes in PPV eyes. The Liou-Brennan schematic eye is recommended for silicone oil and heavy silicone oil in PPV eyes and for all four substitutes in PPV plus lensectomized eyes and PPV plus IOL eyes. In addition, the encapsuled balanced salt solution changes the refraction little in either schematic eye.
在填充四种选定的人工玻璃体替代物(硅油、重硅油、水凝胶和封装平衡盐溶液)后,基于Gullstrand - Emsley和Liou - Brennan简化眼来确定并比较屈光变化。
基于调节放松的Gullstrand - Emsley和Liou - Brennan简化眼,计算填充有人工玻璃体的眼睛的光学常数。在四种人工玻璃体填塞术后,比较这两种模型在扁平部玻璃体切除术(PPV)、PPV加晶状体切除和PPV加人工晶状体(IOL)眼中的理论屈光变化。
在PPV眼中,Gullstrand - Emsley简化眼的屈光变化分别为 +8.710、-4.544、+1.136和 -0.338 D;在PPV加晶状体切除眼中为 +11.044、+20.332、+16.351和 +17.413 D;在PPV加IOL眼中,硅油、重硅油、水凝胶和封装平衡盐溶液填塞眼所需的IOL屈光度分别为 +22.195、+22.366、+22.292和 +22.312 D。同样,在PPV眼中,Liou - Brennan简化眼引起的屈光变化分别为 +6.260、-3.266、+0.817和 -0.272 D;在PPV加晶状体切除眼中为 +13.181、+20.654、+17.451和 +18.305 D;在PPV加IOL眼中所需的IOL屈光度分别为 +13.522、+23.767、+19.389和 +20.558 D。
Gullstrand - Emsley简化眼是预测PPV眼中水凝胶和封装平衡盐溶液替代物屈光变化的方便且准确的模型。对于PPV眼中的硅油和重硅油以及PPV加晶状体切除眼和PPV加IOL眼中的所有四种替代物,推荐使用Liou - Brennan简化眼。此外,封装平衡盐溶液在两种简化眼中引起的屈光变化都很小。