Institute of Physics, Faculty of Physics, Astronomy and Informatics, Nicolaus Copernicus University, Torun, Poland.
Laboratory of Molecular and Systemic Neuromorphology, Department of Neurophysiology, Nencki Institute of Experimental Biology, Polish Academy of Sciences, Warsaw, Poland.
J Biophotonics. 2019 Feb;12(2):e201800154. doi: 10.1002/jbio.201800154. Epub 2018 Oct 14.
Application of the air-puff swept source optical coherence tomography (SS-OCT) instrument to determine the influence of viscoelasticity on the relation between overall the air-puff force and corneal apex displacement of porcine corneas ex vivo is demonstrated. Simultaneous recording of time-evolution of the tissue displacement and air pulse stimulus allows obtaining valuable information related in part to the mechanical properties of the cornea. A novel approach based on quantitative analysis of the corneal hysteresis of OCT data is presented. The corneal response to the air pulse is assessed for different well-controlled intraocular pressure (IOP) levels and for the progression of cross-linking-induced stiffness of the cornea. Micrometer resolution, fast acquisition and noncontact character of the air-puff SS-OCT measurements have potential to improve the in vivo assessment of mechanical properties of the human corneas.
应用空气喷射扫频光学相干断层扫描(SS-OCT)仪器来确定粘弹性对猪眼角膜整体空气喷射力与角膜顶点位移关系的影响,这在离体条件下得到了证实。组织位移和空气脉冲刺激的时变记录允许获得与角膜的机械性能部分相关的有价值的信息。提出了一种基于 OCT 数据角膜滞后量的定量分析的新方法。评估了不同受控眼内压(IOP)水平以及角膜交联诱导硬度增加对空气脉冲的角膜反应。空气喷射 SS-OCT 测量具有亚毫米分辨率、快速采集和非接触特性,有望改善对人眼角膜机械性能的活体评估。