Single-shot dimension measurements of the mouse eye using SD-OCT.

Ophthalmic Surgery Lasers & Imaging Pub Date : 2012-05-01 Epub Date: 2012-03-15 DOI:10.3928/15428877-20120308-04
Minshan Jiang, Pei-Chang Wu, M Elizabeth Fini, Chia-Ling Tsai, Tatsuo Itakura, Xiangyang Zhang, Shuliang Jiao
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Abstract

The authors demonstrate the feasibility and advantage of spectral-domain optical coherence tomography (SD-OCT) for single-shot ocular biometric measurement during the development of the mouse eye. A high-resolution SD-OCT system was built for single-shot imaging of the whole mouse eye in vivo. The axial resolution and imaging depth of the system are 4.5 μm (in tissue) and 5.2 mm, respectively. The system is capable of acquiring a cross-sectional OCT image consisting of 2,048 depth scans in 85 ms. The imaging capability of the SD-OCT system was validated by imaging the normal ocular growth and experimental myopia model using C57BL/6J mice. The biometric dimensions of the mouse eye can be calculated directly from one snapshot of the SD-OCT image. The biometric parameters of the mouse eye including axial length, corneal thickness, anterior chamber depth, lens thickness, vitreous chamber depth, and retinal thickness were successfully measured by the SD-OCT. In the normal ocular growth group, the axial length increased significantly from 28 to 82 days of age (P < .001). The lens thickness increased and the vitreous chamber depth decreased significantly during this period (P < .001 and P = .001, respectively). In the experimental myopia group, there were significant increases in vitreous chamber depth and axial length in comparison to the control eyes (P = .040 and P < .001, respectively). SD-OCT is capable of providing single-shot direct, fast, and high-resolution measurements of the dimensions of young and adult mouse eyes. As a result, SD-OCT is a potentially powerful tool that can be easily applied to research in eye development and myopia using small animal models.

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使用 SD-OCT 对小鼠眼球进行单次尺寸测量。
作者展示了光谱域光学相干断层扫描(SD-OCT)在小鼠眼球发育过程中进行单次眼球生物测量的可行性和优势。他们建立了一个高分辨率的 SD-OCT 系统,用于对整个小鼠眼球进行活体单次成像。该系统的轴向分辨率和成像深度分别为 4.5 μm(组织内)和 5.2 mm。该系统能在 85 毫秒内获取由 2,048 个深度扫描组成的横截面 OCT 图像。通过使用 C57BL/6J 小鼠对正常眼球生长和实验性近视模型进行成像,验证了 SD-OCT 系统的成像能力。小鼠眼球的生物测量尺寸可直接从 SD-OCT 图像的一张快照中计算出来。通过 SD-OCT 成功测量了小鼠眼球的生物测量参数,包括眼轴长度、角膜厚度、前房深度、晶状体厚度、玻璃体腔深度和视网膜厚度。在眼球发育正常组,小鼠的眼轴长度从 28 天龄到 82 天龄显著增加(P < .001)。在此期间,晶状体厚度明显增加,玻璃体腔深度明显减少(P < .001 和 P = .001)。与对照组相比,实验性近视组的玻璃体腔深度和轴长都有明显增加(P = .040 和 P < .001)。SD-OCT 能够单次直接、快速、高分辨率地测量幼年和成年小鼠眼睛的尺寸。因此,SD-OCT 是一种潜在的强大工具,可轻松应用于利用小型动物模型进行的眼球发育和近视研究。
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期刊介绍: Ophthalmic Surgery, Lasers and Imaging, an official publication of ARVO/ISIE, provides clinically valuable, practical articles in the field of ophthalmology on a bimonthly basis. The Journal publishes original, peer-reviewed articles that delve into the entire spectrum of ophthalmic surgery and treatment, including experimental science, surgical techniques, and video surgical clips. Subscribers can also benefit from our featured On Line Advanced Release—read articles before they appear in the print issue!
期刊最新文献
Assessment of intrastromal corneal ring segment position with anterior segment optical coherence tomography. Quantification of pupil parameters in diseased and normal eyes with near infrared iris transillumination imaging. Single-shot dimension measurements of the mouse eye using SD-OCT. Evaluation of clear corneal wound dynamics with contrast-enhanced spectral-domain optical coherence tomography. Histopathology of peripapillary choroidal neovascularization.
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