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Resistance of vascular access catheters for continuous renal replacement therapy: An ex vivo evaluation.

机译:连续性肾脏替代治疗对血管通路导管的抵抗力:一项体外评估。

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AIM: To assess the resistance posed by double-lumen vascular access dialysis catheters at low and high blood flow. Design: Controlled ex vivo study Setting: ICU Laboratory of tertiary hospital. Subjects: Eleven proprietary vascular access catheters for continuous renal replacement therapy. METHODS: Heparinized spent red cells diluted in polygeline solution were pumped using the Aquarius hemofiltration machine (Edwards Life Sciences, Sydney, NSW, Australia) and its standard circuit through several vascular access catheters. Blood flow was increased and then decreased in steps of 50 ml/min (50, 150, 200, 250 and 300 ml/min) while catheter outflow and inflow pressures were recorded. The pressure-flow relationship (hydraulic resistance) of each catheter was then calculated. Study catheters were divided into two groups according to their internal diameter (large gauge vs. smaller gauge) or length (long or short). Hydraulic resistances were compared between the groups. RESULTS: Different double lumen catheters posed clearly different resistances to flow. For all groups of catheters, there was a linear relationship between pressure and flow. No statistically significant difference between short and long catheters could be demonstrated (p=0.715). On the other hand, larger gauge catheters (13 Fr or greater) had significantly lower resistances than smaller gauge (<13 Fr) catheters (p=0.0062). Furthermore, all larger gauge catheters had resistances lower than 0.430 mmHg/ml/min, while all smaller gauge catheters had resistances greater than 0.490 mmHg/ml/min. CONCLUSIONS: Commercial double-lumen dialysis catheters have variable resistance to blood flow under standard ex vivo conditions. Although both length and internal diameter varied, internal diameter had a dominant effect on resistance. This information might be useful to clinicians in guiding their choice of catheters for clinical use.
机译:目的:评估双腔血管通路透析导管在低血流和高血流情况下的阻力。设计:受控的离体研究环境:ICU三级医院实验室。受试者:十一根专有的血管通路导管,用于持续的肾脏替代治疗。方法:使用Aquarius血液滤过机(爱德华兹生命科学公司,悉尼,新南威尔士州,澳大利亚)通过标准血管通过多支血管接入导管泵入在多吉林溶液中稀释的肝素化废红细胞。在记录导管流出和流入压力的同时,血流以50 ml / min(50、150、200、250和300 ml / min)的速度增加然后减少。然后计算每个导管的压力-流量关系(液压阻力)。根据研究导管的内径(大口径与小口径)或长度(长或短)将其分为两组。比较两组之间的水力阻力。结果:不同的双腔导管对流动的阻力明显不同。对于所有类型的导管,压力和流量之间存在线性关系。短导管与长导管之间无统计学差异(p = 0.715)。另一方面,较大规格的导管(13 Fr或更大)的阻力明显小于较小规格(<13 Fr)的导管(p = 0.0062)。此外,所有较大规格的导管的电阻均低于0.430 mmHg / ml / min,而所有较小规格的导管的电阻均高于0.490 mmHg / ml / min。结论:商业化的双腔透析导管在标准离体条件下对血流具有可变的抵抗力。尽管长度和内径都变化,但是内径对电阻有主要影响。该信息可能对临床医生在指导他们选择临床用导管时很有用。

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