Maki Kara L, Ross David S
School of Mathematical Sciences, Rochester Institute of Technology, Rochester, NY, USA
School of Mathematical Sciences, Rochester Institute of Technology, Rochester, NY, USA.
Integr Comp Biol. 2014 Dec;54(6):1043-50. doi: 10.1093/icb/icu092. Epub 2014 Jun 28.
We studied the flow of the post-lens tear film under a soft contact lens to understand how the design parameters of contact lenses can affect ocular health. When a soft contact lens is inserted, the blinking eyelid causes the lens to stretch in order to conform to the shape of the eye. The deformed contact lens acts to assume its un-deformed shape and thus generates a suction pressure in the post-lens tear film. In consequence, the post-lens tear fluid moves; it responds to the suction pressure. The suction pressure may draw in fresh fluid from the edge of the lens, or it may eject fluid there, as the lens reassumes its un-deformed shape. In this article, we develop a mathematical model of the flow of the post-lens tear fluid in response to the mechanical suction pressure of a deformed contact lens. We predict the amount of exchange of fluid exchange under a contact lens and we explore the influence of the eye's shape on the rate of exchange of fluid.
我们研究了软性隐形眼镜下晶状体后泪膜的流动情况,以了解隐形眼镜的设计参数如何影响眼部健康。当插入软性隐形眼镜时,眨眼的眼睑会使镜片伸展以贴合眼睛的形状。变形的隐形眼镜会恢复其未变形的形状,从而在晶状体后泪膜中产生吸力。因此,晶状体后泪液会流动;它会对吸力做出反应。当镜片恢复其未变形的形状时,吸力可能会从镜片边缘吸入新鲜液体,也可能会将液体从那里挤出。在本文中,我们建立了一个数学模型,用于描述晶状体后泪液在变形隐形眼镜的机械吸力作用下的流动情况。我们预测了隐形眼镜下液体交换的量,并探讨了眼睛形状对液体交换速率的影响。