De La Hoz Andres, Villegas Lupe, Marcos Susana, Birkenfeld Judith S
Instituto de Óptica "Daza de Valdés", Consejo Superior de Investigaciones Científicas (IO-CSIC), Madrid, Spain.
Center for Visual Science, The Institute of Optics, Flaum Eye Institute, University of Rochester, Rochester, NY, United States.
Front Bioeng Biotechnol. 2024 Jul 30;12:1426060. doi: 10.3389/fbioe.2024.1426060. eCollection 2024.
The mechanical properties of the sclera are related to its structural function, and changes to these properties are believed to contribute to pathologies such as myopia. Air-puff deformation imaging is a tool that uses an imaging system coupled with an air-puff excitation source to induce and measure deformation in a tissue . Typically used for the study of the cornea's mechanical properties and IOP, this tool has been proposed as a method to evaluate scleral stiffness. In this work, we present a computational model of the rabbit eye to assess scleral deformation under air-puff. Parametric studies were conducted to evaluate the effects of material properties, intraocular pressure, and other parameters on the deformation response. Output from the model was also compared to experimental measurements of air-puff deformation in rabbit eyes under varying IOP. Central deformation response was found to be most influenced by material properties of the sclera (at site of air-puff and posterior), thickness, and IOP, whereas deformation profile was most influenced by material properties. Experimental and simulated IOP dependence were found to be similar (RMSE = 0.13 mm). Scleral APDI could be a useful tool for quick assessment of scleral stiffness.
巩膜的力学性能与其结构功能相关,人们认为这些性能的变化会导致近视等病理状况。气流冲击变形成像技术是一种利用成像系统与气流冲击激发源相结合来诱导和测量组织变形的工具。该工具通常用于研究角膜的力学性能和眼压,已被提议作为评估巩膜硬度的一种方法。在这项研究中,我们提出了一个兔眼计算模型,以评估气流冲击下的巩膜变形。进行了参数研究,以评估材料特性、眼压和其他参数对变形响应的影响。该模型的输出结果还与不同眼压下兔眼气流冲击变形的实验测量结果进行了比较。发现中央变形响应受巩膜材料特性(气流冲击部位和后部)、厚度和眼压的影响最大,而变形轮廓受材料特性的影响最大。实验和模拟的眼压依赖性相似(均方根误差=0.13毫米)。巩膜APDI可能是快速评估巩膜硬度的有用工具。