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Analytical Solutions of a Two-Compartment Model Based on the Volume-Average Theory for Blood Toxin Concentration during and after Dialysis

机译:基于血液毒素浓度的体积平均理论和透析后血液毒素浓度的分析解

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摘要

Accurate prediction of blood toxin concentration during and after dialysis will greatly contribute to the determination of dialysis treatment conditions. Conventional models, namely single-compartment model and two-compartment model, have advantages and disadvantages in terms of accuracy and practical application. In this study, we attempted to derive the mathematical model that predicts blood toxin concentrations during and after dialysis, which has both accuracy and practicality. To propose the accurate model, a new two-compartment model was mathematically derived by adapting volume-averaging theory to the mass transfer around peripheral tissues. Subsequently, to propose a practical model for predicting the blood toxin concentration during dialysis, an analytical solution expressed as algebraic expression was derived by adopting variable transformation. Furthermore, the other analytical solution that predicts rebound phenomena after dialysis was also derived through similar steps. The comparisons with the clinical data revealed that the proposed analytical solutions can reproduce the behavior of the measured blood urea concentration during and after dialysis. The analytical solutions proposed as algebraic expressions will allow a doctor to estimate the blood toxin concentration of a patient during and after dialysis. The proposed analytical solutions may be useful to consider the treatment conditions for dialysis, including the rebound phenomenon.
机译:在透析期间和之后的精确预测血液毒素浓度将极大地有助于测定透析治疗条件。常规模型,即单室模型和两室模型,在准确性和实际应用方面具有优缺点。在这项研究中,我们试图导出预测血液毒素浓度的数学模型,其透析后且具有精度和实用性。为了提出准确的模型,通过将体积平均理论调整到周围组织周围的传质,来数学地导出新的双隔室模型。随后,为了提出在透析期间预测血液毒素浓度的实际模型,通过采用可变转化来衍生成作为代数表达的分析溶液。此外,通过类似的步骤,还衍生出透析后预测反弹现象的另一种分析解决方案。与临床数据的比较显示,所提出的分析溶液可以在透析期间和之后再现测量的血液尿素浓度的行为。作为代数表达所提出的分析解决方案将允许医生在透析期间和之后估计患者的血液毒素浓度。所提出的分析溶液可用于考虑透析的治疗条件,包括回弹现象。

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