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血液透析过程中磷酸盐动力学的贝叶斯参数估计。

Bayesian parameter estimation for phosphate dynamics during hemodialysis.

机构信息

Department of Applied Mathematics and Computer Science, Technical University of Denmark, Richard Petersens Plads, Building 324, 2800 Kongens Lyngby, Denmark.

Centre for Mathematical Modeling - Human Health and Disease, Department of Science and Mathematics, Roskilde University, 4000 Roskilde, Denmark.

出版信息

Math Biosci Eng. 2023 Jan;20(3):4455-4492. doi: 10.3934/mbe.2023207. Epub 2022 Dec 26.

Abstract

Hyperphosphatemia in patients with renal failure is associated with increased vascular calcification and mortality. Hemodialysis is a conventional treatment for patients with hyperphosphatemia. Phosphate kinetics during hemodialysis may be described by a diffusion process and modeled by ordinary differential equations. We propose a Bayesian model approach for estimating patient-specific parameters for phosphate kinetics during hemodialysis. The Bayesian approach allows us to both analyze the full parameter space using uncertainty quantification and to compare two types of hemodialysis treatments, the conventional single-pass and the novel multiple-pass treatment. We validate and test our models on synthetic and real data. The results show limited identifiability of the model parameters when only single-pass data are available, and that the Bayesian model greatly reduces the relative standard deviation compared to existing estimates. Moreover, the analysis of the Bayesian models reveal improved estimates with reduced uncertainty when considering consecutive sessions and multiple-pass treatment compared to single-pass treatment.

摘要

肾衰竭患者的高磷血症与血管钙化和死亡率增加有关。血液透析是治疗高磷血症患者的常规方法。血液透析过程中的磷动力学可以通过扩散过程来描述,并通过常微分方程进行建模。我们提出了一种贝叶斯模型方法,用于估计血液透析过程中磷动力学的患者特异性参数。贝叶斯方法允许我们使用不确定性量化来分析整个参数空间,并比较两种类型的血液透析治疗方法,即传统的单通和新型的多通治疗方法。我们在合成数据和真实数据上验证和测试了我们的模型。结果表明,当只有单通数据可用时,模型参数的可识别性有限,并且与现有估计相比,贝叶斯模型大大降低了相对标准偏差。此外,当考虑连续治疗和多通治疗时,与单通治疗相比,贝叶斯模型的分析显示出更好的估计,并且不确定性降低。

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