Operating Conditions for the Hemodialysis Treatment Based on the Volume Averaging Theory

Y. Sano
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引用次数: 2

Abstract

The effect of operating conditions on the clearance of a countercurrent hollow fiber dialyzer has been investigated by utilizing the membrane transport model based on the volume averaging theory. The three-dimensional numerical method for describing the mass transport phenomena within a hollow fiber membrane dialyzer has been proposed to estimate performances under the several volume flow rates for blood and dialysate phases. Clearances obtained from the present numerical simulation are compared against available set of experimental data to elucidate the validity of the present three-dimensional numerical method. A series of calculations reveal the effect of the volume flow rate for blood and dialysate phases on urea clearance under the several total ultrafiltration rates. Moreover, the removal efficiency, which is the ratio of the mass flow rate of urea removed from the blood phase within a dialyzer to that at the blood phase inlet, is introduced in order to estimate an appropriate volume flow rate for blood and dialysate phases in the hemodialysis treatment. The present study clearly indicates that the present numerical method is quite useful for determining the best clinical protocol of the hemodialysis treatment and developing new dialysis systems such as home hemodialysis, nocturnal dialysis and even wearable artificial kidney.
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基于体积平均理论的血液透析治疗操作条件
利用基于体积平均理论的膜输运模型,研究了操作条件对逆流中空纤维透析器间隙的影响。本文提出了描述中空纤维膜透析器内质量传递现象的三维数值方法,以估计血液和透析相在不同体积流速下的性能。将数值模拟得到的间隙与现有的实验数据进行了比较,以阐明三维数值方法的有效性。一系列的计算揭示了在不同的总超滤率下,血液和透析相的体积流量对尿素清除率的影响。此外,为了估计血液透析治疗中血液和透析液相的适当体积流率,引入了去除效率,即从透析器内血液相去除的尿素的质量流率与血液相入口尿素的质量流率之比。本研究清楚地表明,该数值方法对于确定血液透析治疗的最佳临床方案和开发新的透析系统,如家庭血液透析、夜间透析甚至可穿戴人工肾脏都是非常有用的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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