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Analysis of human crystalline lens accommodation.

机译:人类晶状体适应性分析。

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摘要

The behavior of the human crystalline lens during accommodation is analytically studied. The lens is modeled as a closed axisymmetrical membrane shell of varying thickness enclosing an incompressible liquid. To simulate zonular tension associated with lenticular accommodation, an axisymmetrical radial force or displacement is imposed around the shell equator. Two second-order, simultaneous, nonlinear governing differential equations are derived. Numerical results, obtained from the investigation of human lens profiles of three independently published MRI images and a drawing of a microphotograph, demonstrate that when zonular traction within the physiological force range of the ciliary muscle is exerted, both central lens thickness and central optical power increase. Qualitatively, these increases are independent of lens shape. However, the magnitude of these changes is dependent on the initial profile of the lens and is enhanced by the "natural" variation in capsular thickness. Only when a pulling force significantly exceeds the force capacity of the ciliary muscle does the lens flatten and its central thickness and optical power decrease.
机译:分析了人类晶状体在调节过程中的行为。晶状体建模为厚度可变的封闭轴对称膜壳,其中包裹着不可压缩的液体。为了模拟与双凸透镜调节相关的带状张力,在壳赤道周围施加轴对称径向力或位移。推导了两个二阶同时非线性控制微分方程。通过对三个独立发表的MRI图像的人晶状体的研究和显微照片的绘制获得的数值结果表明,当在睫状肌的生理力范围内进行小带牵引时,中心晶状体厚度和中心屈光力都会增加。定性地,这些增加与镜片形状无关。但是,这些变化的幅度取决于晶状体的初始轮廓,并且通过囊厚度的“自然”变化而增强。仅当拉力明显超过睫状肌的力量时,晶状体才会变平,并且其中心厚度和屈光力会降低。

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