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Optimization of Cannula Visibility during Ultrasound-Guided Subclavian Vein Catheterization, via a Longitudinal Approach, by Implementing Echogenic Technology

机译:超声引导下锁骨下静脉导管插入术中通过可视化技术优化导管可见性

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Objective. One limitation of ultrasound-guided vascular access is the technical challenge of visualizing the cannula during insertion into the vessel. We hypothesized that the use of an echogenic vascular cannula (EC) would improve visualization when compared with a nonechogenic vascular cannula (NEC) during real-time ultrasound-guided subclavian vein (SCV) cannulation in the ICU.Material and Methods. Eighty mechanically ventilated patients were prospectively enrolled in a randomized study that was conducted in a medical-surgical ICU. Forty patients underwent EC and 40 patients were randomized to NEC. The procedure was ultrasound-guided SCV cannulation via the infraclavicular approach on the longitudinal axis.Results. The EC group exhibited increased cannula visibility as compared to the NEC group (92%±3%versus85±7%, resp.,P<0.01). There was strong agreement between the procedure operators and independent observers (k=0.9, 95% confidence intervals assessed by bootstrap analysis = 0.87 to 0.93;P<0.01). Access time (12.1 s±6.5versus18.9 s±10.9) and the perceived technical difficulty of the ultrasound method (4.5±1.5versus7.5±1.5) were both decreased in the EC group compared to the NEC group (P<0.05).Conclusions. Echogenic technology significantly improved cannula visibility and decreased access time and technical complexity optimizing thus real-time ultrasound-guided SCV cannulation via a longitudinal approach.
机译:目的。超声引导的血管通路的局限性是在将插管插入血管的过程中可视化套管的技术挑战。我们假设在ICU实时超声引导下锁骨下静脉(SCV)插管过程中,与非回声血管插管(NEC)相比,使用回声血管插管(EC)可以改善可视化效果。材料和方法。前瞻性地对80名机械通气患者进行了一项医学外科ICU进行的随机研究。 40例患者接受了EC,40例患者被随机分为NEC。该过程是在纵轴上通过锁骨下入路超声引导SCV插管。与NEC组相比,EC组的套管可见性增加(92%±3%对85±7%,分别,P <0.01)。程序操作员和独立观察员之间有很强的一致性(k = 0.9,通过自举分析评估的95%置信区间= 0.87至0.93; P <0.01)。与NEC组相比,EC组的访问时间(12.1 s±6.5对比18.9 s±10.9)和超声方法的感知技术难度(4.5±1.5对比7.5±1.5)均降低(P <0.05)结论。 Echogenic技术显着改善了插管的可见性,缩短了进入时间,并优化了技术复杂性,因此通过纵向方法实时进行了超声引导的SCV插管。

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