Department of Advanced Nursing Technology, Graduate School of Medicine, The University of Tokyo, Bunkyo-ku, Tokyo, Japan.
Research and Development Center, Terumo Corporation, Ashigarakami-gun, Kanagawa, Japan.
J Vasc Access. 2024 Jan;25(1):265-273. doi: 10.1177/11297298221075169. Epub 2022 Jun 30.
Peripheral intravenous catheter (PIVC) insertion often fails on the first attempt. Risk factors include small vein size and dehydration, causing vein deformation and displacement due to puncture resistance of the vessel. The authors developed a short, thin-tipped bevel needle and compared its puncture performance with needles of four available PIVCs using an ex vivo model.
The PIVC with the thin-tipped short bevel needle was compared to four available PIVCs using an ex vivo model which simulated the cephalic vein of the human forearm. The ex vivo model consisted of a porcine shoulder and porcine internal jugular vein, and was used for evaluation of the rate of vein deformation and vessel displacement during needle insertion.
An ex vivo model was created with a vessel diameter of 2.7-3.7 mm and a depth of 2-5 mm. The thin-tipped short bevel PIVC needle was associated with a significantly lower compressive deformation rate and venous displacement compared to the needles of the other four PIVCs.
The thin-tipped short bevel needle induced lower compressive deformation and displacement of the vein than the conventional needles. This needle has the potential to improve the first-attempt success rate of peripheral intravenous catheterization in patients with difficult venous access.
外周静脉置管(PIVC)在首次尝试时经常失败。危险因素包括小静脉尺寸和脱水,由于血管穿刺阻力,导致静脉变形和移位。作者开发了一种短而细尖端斜面的针头,并使用离体模型将其穿刺性能与四种现有 PIVC 进行了比较。
使用离体模型比较了带有短而细尖端斜面的 PIVC 和四种现有 PIVC,该模型模拟了人体前臂的头静脉。离体模型由猪的肩部和猪的颈内静脉组成,用于评估在针头插入过程中静脉变形和血管移位的速度。
创建了一个血管直径为 2.7-3.7mm 且深度为 2-5mm 的离体模型。与其他四种 PIVC 的针头相比,短而细尖端斜面的 PIVC 针头的压缩变形率和静脉移位率明显更低。
与传统针头相比,短而细尖端斜面的针头引起的静脉压缩变形和位移更小。这种针头有可能提高在静脉穿刺困难的患者中进行外周静脉置管的首次尝试成功率。