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用频域光学相干断层扫描技术检测小鼠眼长不对称性。

Examining murine eye length asymmetry with spectral domain optical coherence tomography.

作者信息

Lou Linjiang, Hall Katelyn M, Pardue Machelle T

机构信息

Department of Ophthalmology, Emory University School of Medicine, 1365B Clifton Rd NE, Atlanta, GA, 30322, United States.

Department of Biomedical Engineering, Georgia Institute of Technology and Emory University, 313 Ferst Dr, Atlanta, GA, 30332, United States.

出版信息

Exp Eye Res. 2025 Sep 18;261:110648. doi: 10.1016/j.exer.2025.110648.

Abstract

The mouse is an increasingly popular model for examining refractive development, however measuring axial length in the small mouse eye is challenging. We measured ocular axial dimensions with spectral domain optical coherence tomography (SD-OCT) and examined how ocular dimensions vary with alignment of the SD-OCT system in a mouse model of lens-induced myopia. Refractive error, corneal radius of curvature, and ocular dimensions were measured in C57BL/6J mice from P25 to P46. Mice received monocular lens treatment with either a -10D (n = 14) or -30D lens (n = 13) at P28 or had no lens treatment (n = 14). OCT images were taken at different eccentricities in the temporal, nasal, inferior, and superior quadrants of the eye. Axial length, vitreous chamber depth (VCD), and anterior chamber depth decreased with increasing eccentricity (P < 0.001), whereas lens thickness increased with greater eccentricity (P < 0.001). Axial length and VCD were longer in the superior and temporal quadrants compared to the nasal and inferior quadrants (P < 0.001). The -30D lens induced a greater myopic shift compared to the -10D lens (P < 0.001). Both lenses induced a steeper corneal curvature compared to the contralateral eye (P < 0.01). There were no significant differences in ocular dimensions between lens treatment groups, quadrants, or eccentricities (P > 0.05). Changes in corneal radius of curvature could predict the myopic shift observed with lens treatment. Findings suggest that there are significant differences in axial length measurements depending on the alignment of the OCT system. Thus, consistent alignment to the same region is important for accurate comparison of axial length in mouse eyes with experimental myopia.

摘要

小鼠正日益成为研究屈光发育的常用模型,然而,测量小鼠小眼睛的眼轴长度具有挑战性。我们使用光谱域光学相干断层扫描(SD-OCT)测量了眼部轴向尺寸,并在晶状体诱导性近视小鼠模型中研究了眼部尺寸如何随SD-OCT系统的对准情况而变化。在P25至P46的C57BL/6J小鼠中测量了屈光不正、角膜曲率半径和眼部尺寸。小鼠在P28时接受单眼-10D(n = 14)或-30D晶状体(n = 13)治疗,或不进行晶状体治疗(n = 14)。在眼睛的颞侧、鼻侧、下方和上方象限的不同偏心度下拍摄OCT图像。随着偏心度增加,眼轴长度、玻璃体腔深度(VCD)和前房深度减小(P < 0.001),而晶状体厚度随着偏心度增大而增加(P < 0.001)。与鼻侧和下方象限相比,上方和颞侧象限的眼轴长度和VCD更长(P < 0.001)。与-10D晶状体相比,-30D晶状体诱导的近视偏移更大(P < 0.001)。与对侧眼相比,两种晶状体均诱导角膜曲率更陡峭(P < 0.01)。晶状体治疗组、象限或偏心度之间的眼部尺寸无显著差异(P > 0.05)。角膜曲率半径的变化可以预测晶状体治疗后观察到的近视偏移。研究结果表明,根据OCT系统的对准情况,眼轴长度测量存在显著差异。因此,在实验性近视的小鼠眼中,一致对准同一区域对于准确比较眼轴长度很重要。

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