镜头功率,角膜功率和与中度至高高视障儿童的折射误差相关
Zhirong Wang1,2, Ruiyu Luo1, Yehong Zhuo1
1State Key Laboratory of Ophthalmology, Zhongshan Ophthalmic Centre, Guangdong Provincial Key Laboratory of Ophthalmology and Visual Science, Guangdong Provincial Clinical Research Centre for Ocular Diseases, Sun Yat-Sen University, Guangzhou, China.
概括
患有中度至高度超视的儿童表现出明显的眼睛生长模式,镜头功率和轴长度比低度超视的儿童早些时候有所不同. 轴长,角膜功率和透镜功率是球体等效折射 (SER) 的关键预测因素.
科学领域:
- 眼科医生 眼科 眼科
- 儿科眼科医生 儿科眼科医生
- 眼睛的生物识别技术
背景情况:
- 超视,特别是中度至高水平 (SER ≥ +2.0 D),会影响儿童的视觉发育.
- 了解超视儿童的眼部生物识别对于预测折射误差进展至关重要.
研究的目的:
- 在中度至高超视的儿童中对眼部生物识别参数进行分析.
- 在这个群体中确定球体等效折射 (SER) 的预测因子.
主要方法:
- 招募18岁以下的中度至高度视障患者.
- 进行全面的眼科检查,以测量生物识别参数.
- 参与者被分为低超视 (SER+0.5至+2.0 D) 和中度至高超视 (SER ≥+2.0 D) 组.
主要成果:
- 与低超视眼相比,中度至高超视眼表现出较短的轴长和更强的透镜功率.
- 镜头功率和轴长度的显著差异在中度至高超视度的5岁后出现,而在低超视度的9岁后出现.
- 一个包括轴长,角膜功率和透镜功率的回归模型解释了SER81.2%的差异.
结论:
- 中度至高度视障儿童可能具有独特的眼睛生长轨迹,透镜功率可能抵消轴延长.
- 轴长,角膜功率和透镜功率被确定为儿科中度至高超视的SER的主要预测因素.
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