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High-speed OCT-based ocular biometer combined with an air-puff system for determination of induced retraction-free eye dynamics

机译:基于OCT的高速眼部生物测定仪与气吹系统相结合用于确定诱发的无回缩眼动力

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摘要

We demonstrate a swept source OCT-based ocular biometer integrated with an air-puff stimulus to study the reaction of the eye to mechanical stimulation in vivo. The system enables simultaneous measurement of the stimulus strength and high-speed imaging of the eye dynamics along the visual axis. We characterize the stimulus and perform optimization of the data acquisition for a proper interpretation of the results. Access to the dynamics of axial eye length allows for a determination of the eye retraction, which is used to correct the air-puff induced displacement of ocular structures. We define the parameters to quantify the reaction of the eye to the air puff and determine their reproducibility in a group of healthy subjects. We observe the corneal deformation process and axial wobbling of the crystalline lens. OCT biometer combined with the air puff is the first instrument with the potential to provide comprehensive information on the biomechanics of ocular components.
机译:我们展示了基于扫频源OCT的眼生物测定仪,结合气喘刺激来研究眼睛对体内机械刺激的反应。该系统能够同时测量刺激力并沿视轴对眼部动力学进行高速成像。我们表征刺激因素,并对数据采集进行优化,以正确解释结果。可以利用轴向眼长的动态特性来确定眼睛的回缩,该回缩用于校正由气穴引起的眼结构的位移。我们定义参数以量化眼睛对吹气的反应,并确定它们在一组健康受试者中的可再现性。我们观察到角膜变形过程和晶状体的轴向摆动。 OCT生物测量仪与气嘴相结合是第一台有潜力提供有关眼部组件生物力学的全面信息的仪器。

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