Pauné Jaume, Queiros Antonio, Lopes-Ferreira Daniela, Faria-Ribeiro Miguel, Quevedo Lluisa, Gonzalez-Meijome Jose Manuel
*OD, MSc †OD, PhD ‡OD, PhD, FIACLE Centro Médico Teknon, Barcelona, Spain (JP); Clinical and Experimental Optometry Research Lab (CEORLab), Center of Physics, University of Minho, Braga, Portugal (AQ, DL-F, MF-R, JMG-M); and Universidad Politécnica de Cataluña, Terrasa, Spain (LQ).
Optom Vis Sci. 2015 May;92(5):596-603. doi: 10.1097/OPX.0000000000000582.
The purpose of this work was to evaluate the potential of a novel custom-designed rigid gas permeable (RGP) contact lens to modify the relative peripheral refractive error in a sample of myopic patients.
Fifty-two right eyes of 52 myopic patients (mean [±SD] age, 21 [±2] years) with spherical refractive errors ranging from -0.75 to -8.00 diopters (D) and refractive astigmatism of 1.00 D or less were fitted with a novel experimental RGP (ExpRGP) lens designed to create myopic defocus in the peripheral retina. A standard RGP (StdRGP) lens was used as a control in the same eye. The relative peripheral refractive error was measured without the lens and with each of two lenses (StdRGP and ExpRGP) using an open-field autorefractometer from 30 degrees nasal to 30 degrees temporal, in 5-degree steps. The effectiveness of the lens design was evaluated as the amount of relative peripheral refractive error difference induced by the ExpRGP compared with no lens and with StdRGP conditions at 30 degrees in the nasal and temporal (averaged) peripheral visual fields.
Experimental RGP lens induced a significant change in relative peripheral refractive error compared with the no-lens condition (baseline), beyond the 10 degrees of eccentricity to the nasal and temporal side of the visual field (p < 0.05). The maximum effect was achieved at 30 degrees. Wearing the ExpRGP lens, 60% of the eyes had peripheral myopia exceeding -1.00 D, whereas none of the eyes presented with this feature at baseline. There was no significant correlation (r = 0.04; p = 0.756) between the degree of myopia induced at 30 degrees of eccentricity of the visual field with the ExpRGP lens and the baseline refractive error.
Custom-designed RGP contact lenses can generate a significant degree of relative peripheral myopia in myopic patients regardless of their baseline spherical equivalent refractive error.
本研究旨在评估一种新型定制设计的硬性透气性(RGP)隐形眼镜改变近视患者样本中相对周边屈光不正的潜力。
52例近视患者的52只右眼(平均[±标准差]年龄,21[±2]岁),球镜屈光不正范围为-0.75至-8.00屈光度(D),屈光性散光为1.00 D或更低,佩戴一种新型实验性RGP(ExpRGP)镜片,该镜片旨在在外周视网膜产生近视性离焦。同一只眼使用标准RGP(StdRGP)镜片作为对照。使用开放式自动验光仪,以5度步长,从鼻侧30度至颞侧30度测量无镜片以及佩戴两种镜片(StdRGP和ExpRGP)时的相对周边屈光不正。镜片设计的有效性通过ExpRGP在鼻侧和颞侧(平均)周边视野30度处与无镜片和StdRGP条件相比所引起的相对周边屈光不正差异量来评估。
与无镜片条件(基线)相比,实验性RGP镜片在视野鼻侧和颞侧偏心度超过10度时引起相对周边屈光不正的显著变化(p<0.05)。最大效果在30度时达到。佩戴ExpRGP镜片时,60%的眼睛周边近视超过-1.00 D,而在基线时没有眼睛出现此特征。视野偏心度30度时ExpRGP镜片诱导的近视程度与基线屈光不正之间无显著相关性(r = 0.04;p = 0.756)。
定制设计的RGP隐形眼镜可在近视患者中产生显著程度的相对周边近视,无论其基线等效球镜屈光不正如何。