Muralidharan Geethika, Martínez-Enríquez Eduardo, Birkenfeld Judith, Velasco-Ocana Miriam, Pérez-Merino Pablo, Marcos Susana
Instituto de Óptica "Daza de Valdés", Consejo Superior de Investigaciones Científicas (CSIC), Calle Serrano, 121, 28006, Madrid, Spain.
Biomed Opt Express. 2019 Nov 5;10(12):6084-6095. doi: 10.1364/BOE.10.006084. eCollection 2019 Dec 1.
Ocular biometric parameters, including full shape crystalline lens, were assessed in myopes and emmetropes using 3-D optical coherence tomography. The anterior chamber depth, the radius of the curvature of the anterior cornea, anterior lens, and posterior lens, lens thickness, lens equatorial diameter, surface area, equatorial position, volume, and power, were evaluated as functions of refractive errors and axial lengths while controlling for age effects. The crystalline lens appears to change with myopia consistent with lens thinning, equatorial, and capsular stretching while keeping constant volume. Axial elongation appears counteracted by a crystalline lens power reduction, while corneal power remains unaffected.
使用三维光学相干断层扫描技术,对近视者和正视者的眼部生物特征参数,包括整个晶状体形态进行了评估。在前房深度、角膜前表面、晶状体前表面和后表面的曲率半径、晶状体厚度、晶状体赤道直径、表面积、赤道位置、体积和屈光力等方面,在控制年龄因素的同时,评估其作为屈光不正和眼轴长度的函数关系。晶状体似乎随着近视而发生变化,表现为晶状体变薄、赤道部和囊膜伸展,而体积保持不变。眼轴伸长似乎被晶状体屈光力降低所抵消,而角膜屈光力不受影响。