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一种描述粘度和弹性对滞后作用影响的角膜粘弹性生物力学模型。

A viscoelastic biomechanical model of the cornea describing the effect of viscosity and elasticity on hysteresis.

作者信息

Glass Dianne H, Roberts Cynthia J, Litsky Alan S, Weber Paul A

机构信息

Department of Biomedical Engineering, Ohio State University, Columbus, Ohio, USA.

出版信息

Invest Ophthalmol Vis Sci. 2008 Sep;49(9):3919-26. doi: 10.1167/iovs.07-1321. Epub 2008 Jun 6.

Abstract

PURPOSE

To develop a method for evaluating viscosity and elasticity of the cornea and to examine the effect that both properties have on hysteresis.

METHODS

A three-component spring and dashpot model was created in Simulink in Matlab to represent the purely elastic and viscoelastic behavior of the cornea during a measurement using device called an ocular response analyzer (ORA). Values for elasticity and viscosity were varied while sinusoidal stress was applied to the model. The simulated stresses were used to determine how hysteresis is affected by the individual components of elasticity, viscosity, and maximum stress. To validate the model, high-speed photography was used to measure induced strain in a corneal phantom during ORA measurement. This measured strain was compared with the strains simulated by the model.

RESULTS

When the spring in the viscoelastic portion of the model was stiffened, hysteresis decreased. When the spring in the purely elastic element was stiffened, hysteresis increased. If both springs were stiffened together, hysteresis peaked strongly as a function of the viscosity of the viscoelastic element. Below the peak value, lower elasticity was associated with higher hysteresis. Above the peak value, higher elasticity was associated with higher hysteresis. In addition, hysteresis increased as the air maximum pressure was increased. Measurements from phantom corresponded to predictions from the model.

CONCLUSIONS

A viscoelastic model is presented to illustrate how changing viscosity and elasticity may affect hysteresis. Low hysteresis can be associated with either high elasticity or low elasticity, depending on the viscosity, a finding consistent with clinical reports.

摘要

目的

开发一种评估角膜粘度和弹性的方法,并研究这两种特性对滞后现象的影响。

方法

在Matlab的Simulink中创建了一个三分量弹簧和阻尼器模型,以表示在使用称为眼反应分析仪(ORA)的设备进行测量时角膜的纯弹性和粘弹性行为。在对模型施加正弦应力时,改变弹性和粘度值。模拟应力用于确定滞后现象如何受到弹性、粘度和最大应力等各个分量的影响。为了验证该模型,在ORA测量期间使用高速摄影测量角膜模型中的诱导应变。将测量的应变与模型模拟的应变进行比较。

结果

当模型粘弹性部分的弹簧变硬时,滞后现象减少。当纯弹性元件中的弹簧变硬时,滞后现象增加。如果两个弹簧一起变硬,滞后现象作为粘弹性元件粘度的函数强烈峰值。在峰值以下,较低的弹性与较高的滞后现象相关。在峰值以上,较高的弹性与较高的滞后现象相关。此外,滞后现象随着空气最大压力的增加而增加。模型的测量结果与模型的预测结果相符。

结论

提出了一种粘弹性模型,以说明粘度和弹性的变化如何影响滞后现象。低滞后现象可能与高弹性或低弹性相关,这取决于粘度,这一发现与临床报告一致。

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