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首页> 外文期刊>AJR: American Journal of Roentgenology : Including Diagnostic Radiology, Radiation Oncology, Nuclear Medicine, Ultrasonography and Related Basic Sciences >Modifying peripheral IV catheters with side holes and side slits results in favorable changes in fluid dynamic properties during the injection of iodinated contrast material.
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Modifying peripheral IV catheters with side holes and side slits results in favorable changes in fluid dynamic properties during the injection of iodinated contrast material.

机译:用侧孔和侧缝修改外周静脉导管会导致在注射碘化造影剂期间流体动力学特性发生有利变化。

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摘要

OBJECTIVE: The purpose of this study was to compare a standard peripheral end-hole angiocatheter with those modified with side holes or side slits using experimental optical techniques to qualitatively compare the contrast material exit jets and using numeric techniques to provide flow visualization and quantitative comparisons. MATERIALS AND METHODS: A Schlieren imaging system was used to visualize the angiocatheter exit jet fluid dynamics at two different flow rates. Catheters were modified by drilling through-and-through side holes or by cutting slits into the catheters. A commercial computational fluid dynamics package was used to calculate numeric results for various vessel diameters and catheter orientations. RESULTS: Experimental images showed that modifying standard peripheral IV angiocatheters with side holes or side slits qualitatively changed the overall flow field and caused the exiting jet to become less well defined. Numeric calculations showed that the addition of side holes or slits resulted in a 9-30% reduction of the velocity of contrast material exiting the end hole of the angiocatheter. With the catheter tip directed obliquely to the wall, the maximum wall shear stress was always highest for the unmodified catheter and was always lowest for the four-side-slit catheter. CONCLUSION: Modified angiocatheters may have the potential to reduce extravasation events in patients by reducing vessel wall shear stress.
机译:目的:本研究的目的是使用实验光学技术对标准的外围端孔血管导管与经侧孔或侧缝修饰的导管进行比较,以定性比较造影剂出口射流,并使用数值技术进行流动可视化和定量比较。材料与方法:使用Schlieren成像系统可视化两种不同流速下的血管导管出口射流动力学。通过钻通孔或通过在导管中切开狭缝来对导管进行修改。商业计算流体动力学软件包用于计算各种血管直径和导管方向的数值结果。结果:实验图像表明,用侧孔或侧缝修饰标准的外周静脉血管导管可定性地改变整体流场,并导致射流的清晰度降低。数值计算表明,增加侧孔或狭缝会导致造影剂从血管导管末端孔流出的速度降低9-30%。在导管尖端倾斜于壁的情况下,未修饰的导管的最大壁切应力始终最高,而四侧缝导管的最大壁切应力始终最低。结论:改良的血管导管可能通过减少血管壁切应力来减少患者的外渗事件。

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