Key Laboratory of Opto-Electronic Information Science and Technology of Jiangxi Province and Jiangxi Engineering Laboratory for Optoelectronics Testing Technology, Nanchang Hangkong University, Nanchang, PR China.
Eye Center, Second Affiliated Hospital of Nanchang University, Nanchang, PR China.
J Biophotonics. 2024 Feb;17(2):e202300368. doi: 10.1002/jbio.202300368. Epub 2023 Dec 7.
The scleral elasticity is closely related with many ocular diseases, but the relevant research is still insufficient. Here, we utilized optical coherence elastography to carefully study biomechanical properties of the sclera at different positions and under different intraocular pressures. Meanwhile, elastic wave velocity and Young's modulus of each position were obtained using a phase velocity algorithm. Accordingly, the two-dimensional elasticity distribution image was achieved by mapping the Young's modulus values to the corresponding structure based on the relationship between the position and its Young's modulus. Therefore, elastic information in regions-of-interest can be read and compared directly from the scleral structure, indicating that our method may be a very useful tool to evaluate the elasticity of sclera and provide intuitive and reliable proof for diagnosis and research.
巩膜弹性与许多眼病密切相关,但相关研究仍不够充分。在这里,我们利用光相干弹性成像技术,仔细研究了不同位置和不同眼内压下巩膜的生物力学特性。同时,使用相速度算法获得了各位置的弹性波速度和杨氏模量。据此,通过将杨氏模量值映射到相应的结构上,基于位置与其杨氏模量之间的关系,获得了二维弹性分布图像。因此,可以直接从巩膜结构中读取和比较感兴趣区域的弹性信息,表明我们的方法可能是评估巩膜弹性的非常有用的工具,并为诊断和研究提供直观可靠的证据。