Intensive Care Unit, Kyushu University Hospital, Fukuoka, Japan.
Department of Anesthesiology and Critical Care Medicine, Kyushu University Hospital, 3-1-1 Maidashi, Higashi-ku, Fukuoka, 812-8582, Japan.
BMC Anesthesiol. 2022 Jul 4;22(1):205. doi: 10.1186/s12871-022-01738-x.
Although peripherally inserted central catheters (PICCs) have been widely used, they have not been frequently used in anesthesia practice. The central venous pressure measured via PICCs are reportedly as accurate as that measured via central venous catheters (CVCs), but the findings concerning rapid infusion are unclear. This study examined whether or not pressure-resistant PICCs could be used for rapid fluid infusion. METHODS: The in-line pressure was measured in similar-sized double-lumen catheters-4-Fr PICC (55, 45 and 35 cm) and 17-G CVC (20 and 13 cm)-at flow rates of saline decided using a roller pump system. We also examined the flow rate at an in-line pressure of 300 mmHg, which is the critical pressure at which hemolysis is considered to occur during blood transfusion.
The pressure-resistant PICCs obtained a high flow rate similar to that of CVCs, but the in-line pressures increased in proportion to the flow rate and catheter length. Flow rates at an intra-circuit pressure of 300 mmHg were not significantly different between the 45-cm PICC and 20-cm CVC.
Pressure-resistant PICCs can be used for rapid fluid infusion.
尽管外周静脉置入中心导管(PICC)已被广泛应用,但在麻醉实践中尚未被广泛应用。通过 PICC 测量的中心静脉压据称与通过中心静脉导管(CVC)测量的结果一样准确,但关于快速输注的结果尚不清楚。本研究旨在探讨耐高压 PICC 是否可用于快速输液。
在类似尺寸的双腔导管中测量在线压力 - 4Fr PICC(55、45 和 35cm)和 17-G CVC(20 和 13cm),使用滚压泵系统决定生理盐水的流速。我们还检查了在线压力为 300mmHg 时的流速,这是在输血过程中被认为会发生溶血的临界压力。
耐高压 PICC 可获得与 CVC 相似的高流速,但在线压力会随流速和导管长度成比例增加。在 300mmHg 腔内压力下,45cm PICC 和 20cm CVC 的流速没有显著差异。
耐高压 PICC 可用于快速输液。