论文标题

视网膜激光处理的参数估计和模型降低

Parameter estimation and model reduction for retinal laser treatment

论文作者

Schaller, Manuel, Wilson, Mitsuru, Kleyman, Viktoria, Mordmüller, Mario, Brinkmann, Ralf, Müller, Matthias A., Worthmann, Karl

论文摘要

激光光凝是视网膜疾病(例如糖尿病性视网膜病和黄斑水肿)的最常用治疗方法之一。基于模型的控制(例如模型预测控制(MPC))的使用可以通过确保温度界限来增强安全有效的治疗方法。通常,由于眼底的温度分布受非线性参数依赖性的热方程,因此无法满足基于模型的控制设计的实时要求。通过通过较低维度的系统来表示模型,该模型可以很好地考虑到原始模型,包括参数依赖性。我们将一种全局基础方法与离散的经验插值方法相结合,量身定制其超参数以激光光凝,并与基于泰勒系列近似的最近提出的方法相比,显示出其优越性。它的有效性在MPC的计算时间中衡量。我们进一步提出了一项案例研究,以估计猪眼中吸收参数的范围,通过理论和数值灵敏度分析,我们表明,相对于视网膜色素上皮(RPE)的吸收系数,温度升高的敏感性高于脉络膜的吸收系数。

Laser photocoagulation is one of the most frequently used treatment approaches for retinal diseases such as diabetic retinopathy and macular edema. The use of model-based control, such as Model Predictive Control (MPC), enhances a safe and effective treatment by guaranteeing temperature bounds. In general, real-time requirements for model-based control designs are not met since the temperature distribution in the eye fundus is governed by a heat equation with a nonlinear parameter dependency. This issue is circumvented by representing the model by a lower-dimensional system which well-approximates the original model, including the parametric dependency. We combine a global-basis approach with the discrete empirical interpolation method, tailor its hyperparameters to laser photocoagulation, and show its superiority in comparison to a recently proposed method based on Taylor-series approximation. Its effectiveness is measured in computation time for MPC. We further present a case study to estimate the range of absorption parameters in porcine eyes, and by means of a theoretical and numerical sensitivity analysis we show that the sensitivity of the temperature increase is higher with respect to the absorption coefficient of the retinal pigment epithelium (RPE) than of the choroid's.

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