Tear film dynamics with blinking and contact lens motion

Daniel M Anderson;Maria Corsaro;Jonathan Horton;Tim Reid;Padmanabhan Seshaiyer
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引用次数: 1

Abstract

We develop a lubrication theory-based mathematical model that describes the dynamics of a tear film during blinking and contact lens (CL) wear. The model extends previous work on pre-corneal tear film dynamics during blinking by coupling the partial differential equation for tear film thickness to a dynamic model for CL motion. We explore different models for eyelid motion and also account for possible voluntary and involuntary globe (eyeball) rotation that may accompany blinking. Boundary conditions for mass flux at the eyelids are also adapted to account for the presence and motion of the CL. Our predictions for CL motion compare reasonably with existing data. Away from the eyelids the pre-lens tear film (PrLTF) is shifted, relative to its pre-corneal counterpart, in the direction of CL motion. Near the eyelids, the inflow/outflow of fluid under the eyelids also influences the PrLTF profile. We also compare our PrLTF dynamics to existing in vivo tear film thickness measurements.
泪膜动态与眨眼和隐形眼镜运动
我们开发了一个基于润滑理论的数学模型,描述了眨眼和隐形眼镜(CL)佩戴过程中泪膜的动力学。该模型通过将泪膜厚度的偏微分方程与CL运动的动力学模型相耦合,扩展了先前关于眨眼过程中角膜前泪膜动力学的工作。我们探索了眼睑运动的不同模型,并解释了可能伴随眨眼的眼球旋转。眼睑处质量通量的边界条件也适用于CL的存在和运动。我们对CL运动的预测与现有数据比较合理。晶状体前泪膜(PrLTF)相对于角膜前泪膜在CL运动方向上移动,远离眼睑。在眼睑附近,眼睑下方流体的流入/流出也会影响PrLTF轮廓。我们还将我们的PrLTF动力学与现有的体内泪膜厚度测量进行了比较。
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