利用生物电阻抗矢量分析法估计血液透析期间的水合状态

W. Chi, B. Ju, Shih-Yu Huang
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引用次数: 1

摘要

目的:采用生物电阻抗矢量分析(BIVA)方法观察血液透析患者的水化情况,了解透析期间的控水质量。方法:随机选取慢性血液透析患者60例,其中男性20例,年龄62±12.5岁;女性40例,年龄65±9.5岁。本研究使用多频生物电阻抗分析仪对患者透析过程开始和结束时的电阻和电抗进行检测,并在两个轴上绘制电阻和电抗的z形图,分别按每个受试者的身高归一化。然后根据患者的情况,如性别、体重、是否患有糖尿病等,在z图上比较与这些情况相关的向量,了解患者的水合状态。结果:在性别、体重、是否患有糖尿病等所有条件下,均可观察到透析前/透析后形式获得的向量在z图上的分布,从平面的左下到右上沿长轴分布。在不同性别上,相对于从瘦到胖的情况,向量位于平面的小轴上,从右下到左上。结论:从z图上矢量的方向和位置可以得知透析期间不同性别和体重患者的水合状态。z图上的矢量位移长度可以显示患者对水间透析的控制情况,由此可以向临床工作者提出建议,促进患者的自我管理。我们可以用生物阻抗矢量分析的图解方法帮助患者在家管理他们的水分和饮食。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Using Bioelectrical Impedance Vector Analysis Method Estimate the Hydration State during Hemodialysis
Objective: This investigation employed bioelectrical impedance vector analysis (BIVA) method to observed the hydration of patients undergoing hemodialysis process and to understand the quality of water control inter-dialysis. Method: Sixty chronic hemodialysis patients were randomly selected (20 males, aged 62±12.5, and 40 females, aged 65±9.5). This study used a multifrequency bioelectrical impedance analyzer to detect the resistance and reactance of a patient at start and end on dialysis process and to obtain Z-graph drawn on two axes resistance and reactance normalized by each subject’s height individually. Then, according to patients’ conditions, such as gender, weight, and whether they had diabetes or not, vectors relative to these conditions were compared on the Z-graph to know hydration state. Results: Distributions of vectors obtained forms pre-/post-dialysis on the Z-graph could be observed, which all located along the major axis from the lower-left to upper-right of the plane under all conditions like gender, weight, and whether they had diabetes or not. On different genders, vectors located along the minor axis from the lower-right to upper-left of the plane relative to the condition from lean to obese. Conclusion: From the direction and location of vectors on the Z-graph, we could learn that the hydration state of different gender and weight of patients during intra-dialysis. The length of vector displacement on the Z-graph could show the patient’s control of water inter-dialysis, from this, which could be proposed to clinic workers to promote the self-management of the patient. We can help patients to manage their hydrations and diet at home with the graphic method of bioimpedance vector analysis.
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