与经典亥姆霍兹理论一致的晶状体调节力学

K. Wan, N. Ravi
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引用次数: 2

摘要

推导了一个数学模型来解释经典的亥姆霍兹调节力学理论。通过将晶状体囊视为晶状体的唯一弹性可变形部件,将晶状体纤维视为能够承受静水压力的不可压缩液体,发现了晶状体在赤道带拉伸作用下的机械响应。结果与亥姆霍兹一致,即拉伸或不调节的透镜沿光学极具有减小的曲率。该模型与Chien等人最近建立的替代模型进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanics of ocular lens accommodation consistent with the classical Helmholtz theory
A mathematical model is derived to account for the classical Helmholtz theory of accommodation mechanics. By treating the lens capsule as the only elastic deformable component of the ocular lens and the lens fibre as an incompressible liquid capable of supporting a hydrostatic pressure, the mechanical response of a lens subject to equatorial tensile by the zonules is found. The results are consistent with Helmholtz that a stretched or unaccommodated lens possesses a reduced curvature along the optical pole. The model is compared with an alternative model recently built by Chien et al.
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