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动静脉瘘手术个体化脉搏波传播模型的敏感性分析。第 A 部分:识别最具影响力的模型参数。

A sensitivity analysis of a personalized pulse wave propagation model for arteriovenous fistula surgery. Part A: Identification of most influential model parameters.

机构信息

Department of Biomedical Engineering, Eindhoven University of Technology, The Netherlands.

出版信息

Med Eng Phys. 2013 Jun;35(6):810-26. doi: 10.1016/j.medengphy.2012.08.013. Epub 2012 Sep 8.

Abstract

Previously, a pulse wave propagation model was developed that has potential in supporting decision-making in arteriovenous fistula (AVF) surgery for hemodialysis. To adapt the wave propagation model to personalized conditions, patient-specific input parameters should be available. In clinics, the number of measurable input parameters is limited which results in sparse datasets. In addition, patient data are compromised with uncertainty. These uncertain and incomplete input datasets will result in model output uncertainties. By means of a sensitivity analysis the propagation of input uncertainties into output uncertainty can be studied which can give directions for input measurement improvement. In this study, a computational framework has been developed to perform such a sensitivity analysis with a variance-based method and Monte Carlo simulations. The framework was used to determine the influential parameters of our pulse wave propagation model applied to AVF surgery, with respect to parameter prioritization and parameter fixing. With this we were able to determine the model parameters that have the largest influence on the predicted mean brachial flow and systolic radial artery pressure after AVF surgery. Of all 73 parameters 51 could be fixed within their measurement uncertainty interval without significantly influencing the output, while 16 parameters importantly influence the output uncertainty. Measurement accuracy improvement should thus focus on these 16 influential parameters. The most rewarding are measurement improvements of the following parameters: the mean aortic flow, the aortic windkessel resistance, the parameters associated with the smallest arterial or venous diameters of the AVF in- and outflow tract and the radial artery windkessel compliance.

摘要

先前,我们开发了一种脉搏波传播模型,该模型在辅助动静脉瘘 (AVF) 手术决策方面具有潜力,可用于血液透析。为了使波动传播模型适应个性化条件,需要使用患者特异性输入参数。但在临床上,可测量的输入参数数量有限,导致数据集稀疏。此外,患者数据还存在不确定性。这些不确定和不完整的输入数据集将导致模型输出不确定性。通过敏感性分析,可以研究输入不确定性向输出不确定性的传播,从而为输入测量改进提供方向。在这项研究中,我们开发了一个计算框架,通过基于方差的方法和蒙特卡罗模拟来执行这种敏感性分析。该框架用于确定我们的脉搏波传播模型在 AVF 手术中的影响参数,包括参数优先级排序和参数固定。这样,我们就能够确定对预测 AVF 手术后肱动脉平均流量和收缩期桡动脉压力有最大影响的模型参数。在所有 73 个参数中,有 51 个参数可以在其测量不确定性范围内固定,而不会显著影响输出,而 16 个参数则会显著影响输出不确定性。因此,测量精度的提高应集中在这 16 个有影响的参数上。最值得关注的是以下参数的测量改进:平均主动脉流量、主动脉风箱阻力、AVF 入流出道中最小动脉或静脉直径相关的参数以及桡动脉风箱顺应性。

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