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Refractive error and biometrics of anterior segment of eyes of healthy young university students in Japan

机译:日本健康青年大学生前段屈光误差与生物学学

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To determine the parameters of the anterior segment of eyes that are significantly associated with the refractive error in healthy young Japanese university students. This was a cross-sectional observational study of 229 healthy Japanese university students (men: women,147:82) whose age ranged between 20 to 29 years. Univariate and multivariate linear regression analyses were performed to identify the factors that were significantly correlated with the refractive error. The independent variables included age, sex, axial length, anterior chamber depth, corneal diameter, curvature of anterior surface of cornea, and central corneal thickness. The mean refractive error (spherical equivalent) was -4.1?±?2.7 diopters (D) with a range of -12.5 to +0.5 D, and the mean axial length was 25.4?±?1.3?mm with a range of 22.4 to 29.0?mm. Pearson univariate correlation analysis found that the refractive error was significantly and negatively correlated with the axial length (R?=?-0.82, P??0.001), deeper anterior chamber (R?=?-0.30, P??0.001), and larger corneal diameter (R?=?-0.21, P?=?0.001). Multiple regression analysis showed that the refractive error was significantly associated with a longer axial length (P??0.001), a deeper anterior chamber (P??0.001), and a flatter corneal curvature (P??0.001).The biometric values of the anterior segment of the eyes should make the eye more hyperopic which would reduce the myopia-inducing lengthening of the axial length.
机译:为了确定与健康年轻日本大学生中的屈光误差显着相关的眼睛的参数。这是229名健康日本大学生(男性:女性,147:82)的横断面目理解研究,其年龄在20至29岁之间。进行单变量和多变量线性回归分析以确定与屈光误差显着相关的因素。独立变量包括年龄,性别,轴向长度,前房深度,角膜直径,角膜前表面的曲率,以及中央角膜厚度。平均屈光误差(球面等同物)为-4.1?±±2.7屈光度(d),范围为-12.5至+ 0.5d,平均轴向长度为25.4?±1.3Ω·mm,范围为22.4至29.0 ?毫米。 Pearson单变量相关分析发现,屈光误差显着且与轴长相关(R?=Δ - 0.82,p≤x≤0.82,更深的前腔(r?=Δ - 0.30,p?<0.001) ,较大的角膜直径(r?=Δ - 0.21,p?= 0.001)。多元回归分析表明,屈光误差与较长的轴向长度(p≤0.001),更深的前房(p≤0.001),以及更平坦的角膜曲率(p≤xexpersul)。该眼睛前段的生物识别值应该使眼睛更加过度,这将降低近距离轴向长度的近视延长。

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