School of Instrument Science and Opto-electronics Engineering, Beihang University, Beijing, P. R. China.
Key Laboratory of Opto-Electronic Information Science and Technology of Jiangxi Province and Jiangxi Engineering Laboratory for Optoelectronics Testing Technology, Nanchang Hangkong University, Nanchang, P. R. China.
J Biophotonics. 2024 Apr;17(4):e202300441. doi: 10.1002/jbio.202300441. Epub 2024 Jan 14.
Quantifying corneal elasticity after femtosecond laser-assisted in situ keratomileusis (FS-LASIK) procedure plays an important role in improving surgical safety and quality, since some latent complications may occur ascribing to changes in postoperative corneal biomechanics. Nevertheless, it is suggested that current research has been severely constrained due to the lack of an accurate quantification method to obtain postoperative corneal elasticity distribution. In this paper, an acoustic radiation force optical coherence elastography system combined with the improved phase velocity algorithm was utilized to realize elasticity distribution images of the in vivo rabbit cornea after FS-LASIK under various intraocular pressure levels. As a result, elasticity variations within and between the regions of interest could be identified precisely. This is the first time that elasticity imaging of in vivo cornea after FS-LASIK surgery was demonstrated, and the results suggested that this technology may hold promise in further exploring corneal biomechanical properties after refractive surgery.
定量测量飞秒激光辅助原位角膜磨镶术(FS-LASIK)后角膜的弹性具有重要意义,因为术后角膜生物力学的变化可能导致一些潜在的并发症。然而,目前的研究受到限制,因为缺乏一种准确的量化方法来获得术后角膜弹性分布。在本文中,我们使用声辐射力光学相干弹性成像系统结合改进的相速度算法,实现了不同眼压水平下 FS-LASIK 术后活体兔眼角膜的弹性分布图像。结果表明,能够精确识别感兴趣区域内和区域之间的弹性变化。这是首次对 FS-LASIK 术后活体角膜的弹性成像进行研究,结果表明该技术可能有助于进一步探索屈光手术后角膜的生物力学特性。