猕猴视网膜周围神经纤维层和黄斑神经节细胞-内丛状层参数及其相关因素

IF 5 2区 医学 Q1 OPHTHALMOLOGY
Yuan Zhang, Guitong Ye, Kezhe Chen, Shaofen Huang, Rui Xie, Jianqi Chen, Wei Liu, Zhiwei Wang, Ruiyu Luo, Jinan Zhan, Yehong Zhuo, Yiqing Li, Yingting Zhu
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引用次数: 0

摘要

目的:本研究旨在界定犬科猕猴视网膜周围神经纤维层(pRNFL)、黄斑神经节细胞层(mGCL)和黄斑内丛状层(mIPL)厚度的正常范围,并探讨它们与年龄、屈光不正和轴长(AL)的相互关系和相关性:在这项横断面研究中,我们测量了 357 只健康猕猴的生物计量参数、屈光参数和 pRNFL/mGCL/mIPL 厚度。猴子按年龄和球面等值(SE)分为几组。采用相关和回归分析来探讨 pRNFL 和 mGCL/mIPL 厚度之间的关系,以及它们与上述参数的相关性:平均年龄、SE和AL分别为(14.46 ± 6.70)岁、(-0.96 ± 3.23)屈光度(D)和(18.39 ± 1.02)毫米。全球 pRNFL 平均厚度为 95.06 ± 9.42 µm(范围 = 54-116 µm),其中下象限最高,其次是上象限、颞象限和鼻象限(P < 0.001)。颞侧 pRNFL 厚度与年龄(r = 0.218,P < 0.001)和 AL(r = 0.364,P < 0.001)呈正相关,与 SE(r = -0.270,P < 0.001)呈负相关。在其他象限,pRNFL 厚度与年龄和 AL 呈负相关,但与 SE 呈正相关。在多变量线性回归模型中,经性别和AL调整后,年龄(β = -0.350,P < 0.001)和SE(β = 0.206,P < 0.001)与全球pRNFL厚度呈显著相关。调整年龄、性别、SE 和 AL 后,pRNFL 厚度与 mGCL(β = 0.433,P < 0.001)和 mIPL 厚度(β = 0.465,P < 0.001)呈正相关:猕猴的 pRNFL/mGCL/mIPL厚度分布以及与年龄、AL和SE的关系与人类非常相似,这表明猕猴是眼科研究中非常有价值的动物模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Peripapillary Retinal Nerve Fiber Layer and Macular Ganglion Cell-Inner Plexiform Layer Parameters and Their Associated Factors in Cynomolgus Macaques.

Purpose: The purpose of this study was to define the normal range of peripapillary retinal nerve fiber layer (pRNFL), macular ganglion cell layer (mGCL), and macular inner plexiform layer (mIPL) thickness in cynomolgus macaques, and explore their inter-relationship and correlation with age, refractive errors, and axial length (AL).

Methods: In this cross-sectional study, we measured biometric and refractive parameters, and pRNFL/mGCL/mIPL thickness in 357 healthy cynomolgus macaques. Monkeys were divided into groups by age and spherical equivalent (SE). Correlation and regression analyses were used to explore the relationship between pRNFL and mGCL/mIPL thickness, and their correlation with the above parameters.

Results: The mean age, SE, and AL were 14.46 ± 6.70 years, -0.96 ± 3.23 diopters (D), and 18.39 ± 1.02 mm, respectively. The mean global pRNFL thickness was 95.06 ± 9.42 µm (range = 54-116 µm), with highest values in the inferior quadrant, followed by the superior, temporal, and nasal quadrants (P < 0.001). Temporal pRNFL thickness correlated positively with age (r = 0.218, P < 0.001) and AL (r = 0.364, P < 0.001), and negatively with SE (r = -0.270, P < 0.001). In other quadrants, pRNFL thickness correlated negatively with age and AL, but positively with SE. In the multivariable linear regression model, adjusted for sex and AL, age (β = -0.350, P < 0.001), and SE (β = 0.206, P < 0.001) showed significant associations with global pRNFL thickness. After adjusting for age, sex, SE, and AL, pRNFL thickness positively correlated with mGCL (β = 0.433, P < 0.001) and mIPL thickness (β = 0.465, P < 0.001).

Conclusions: The pRNFL/mGCL/mIPL thickness distribution and relationship with age, AL, and SE in cynomolgus macaques were highly comparable to those in humans, suggesting that cynomolgus monkeys are valuable animal models in ophthalmic research.

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来源期刊
CiteScore
6.90
自引率
4.50%
发文量
339
审稿时长
1 months
期刊介绍: Investigative Ophthalmology & Visual Science (IOVS), published as ready online, is a peer-reviewed academic journal of the Association for Research in Vision and Ophthalmology (ARVO). IOVS features original research, mostly pertaining to clinical and laboratory ophthalmology and vision research in general.
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