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Dysfunction Screening in Experimental Arteriovenous Grafts for Hemodialysis Using Inflow and Outflow Hemodynamic Game Analysis

机译:使用流入和流出血液动力学博弈分析血液透析的实验动血液移植物中的功能障碍筛选

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Hemodialysis access stenosis leading to dysfunction occurs at the venous anastomsis site or the outflow vein. Information from the inflow stenosis, such as blood pressure, flow velocity, and flow resistance increases, allows dysfunction screening from early clots and thrombosis to the progress of outflow stenosis. To prevent access complications, such as inflow / outflow stenosis and steal syndrome, this study proposes the dysfunction screening in experimental arteriovenous grafts (AVGs) for hemodialysis using inflow and outflow hemodynamic game analysis. In physical examinations, a stenosis limits flow volume, and then the pressure at a stenotic locus rapidly falls between inflow and outflow. Therefore, pressure drop and flow resistance can be estimated based on variations in flow volume. The quantitative differences can be applied to evaluate the risk of access dysfunction, in terms of the degree of stenosis (DOS). With the differential pressure sensors, the measured pressure drop, AP, is used to estimate the injection velocity, V_(inj), and resistance (Res) index through an experimental AVG. A cooperative game (CG) based decision-making model is then utilized to evaluate the risk of an AVG dysfunction. The proposed model is implemented with the LabVIEW graphical programming. For an equivalent human circulation system, a total of 72 measurements were made at each inflow and outflow site, at locations ± lD_a, l = 5,10,17 and D_a = 0.635cm. At least 6 measurements were made at each location under various DOS with varying 50% to 95%. The findings indicate that the proposed measurement method and decision-making model can be carried out in practical examinations during hemodialysis. Index Terms-Arteriovenous Graft (AVG), Pressure Drop, Resistance (Res) Index, Cooperative Game (CG).
机译:血液透析通路狭窄,导致功能障碍发生在静脉吻合术部位或流出静脉。从流入狭窄的信息,如血压,血流速度,并且流动阻力增大,使功能异常从早期血栓和血栓形成筛选到流出狭窄的进度。为了防止访问的并发症,如流入/流出狭窄及动脉窃血综合征,这项研究提出了使用功能紊乱流入和流出的血流动力学博弈分析实验动静脉移植物(AVGs)血液透析筛选。在身体检查,一个狭窄的限制流动体积,然后在狭窄轨迹的压力流入和流出之间迅速下降。因此,压力降和流动阻力可以基于在流量的变化进行估计。定量差异可以用于评价的接入功能障碍的风险,在狭窄的(DOS)程度方面。与差压传感器,所测量的压降,AP,用于通过一个实验AVG来估计的注入速度,V_(INJ)和电阻(RES)的索引。然后,合作博弈(CG)的决策模型来评价的AVG功能障碍的风险。该模型与LabVIEW图形化编程来实现。对于相等的人类循环系统,总共72个测量在每个流入和流出的网站进行了改造,在位置±lD_a,L = 5,10,17和D_A =0.635厘米。至少6个测量是在每个位置以各种DOS具有变化的50%至95%以下。研究结果表明,所提出的测量方法和决策模型,可以在实际考试血液透析期间进行。关键词:动静脉移植物(AVG),压降,电阻(RES)指数,合作博弈(CG)。

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