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Rôle of contrast media viscosity in altering vessel wall shear stress and relation to the risk of contrast extravasations

机译:改变血管壁剪切应力的造影剂粘度和对比外渗风险的关系

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摘要

Iodinated contrast media (CM) are the most commonly used injectables in radiology today. A range of different media are commercially available, combining various physical and chemical characteristics (ionic state, osmolality, viscosity) and thus exhibiting distinct in vivo behaviour and safety profiles. In this paper, numerical simulations of blood flow with contrast media were conducted to investigate the effects of contrast viscosity on generated vessel wall shear stress and vessel wall pressure to elucidate any possible relation to extravasations. Five different types of contrast for Iodine fluxes ranging at 1.5–2.2 gI/s were modelled through 18 G and 20 G cannulae placed in an ideal vein at two different orientation angles. Results demonstrate that the least viscous contrast media generate the least maximum wall shear stress as well as the lowest total pressure for the same flow rate. This supports the empirical clinical observations and hypothesis that more viscous contrast media are responsible for a higher percentage of contrast extravasations. In addition, results support the clinical hypothesis that a catheter tip directed obliquely to the vein wall always produces the highest maximum wall shear stress and total pressure due to impingement of the contrast jet on the vessel wall.
机译:碘化造影剂(CM)是当今放射学中最常用的注射剂。多种不同的介质可商购获得,它们结合了各种物理和化学特性(离子态,重量克分子渗透浓度,粘度),因此表现出不同的体内行为和安全性。在本文中,使用造影剂对血流进行了数值模拟,以研究造影剂粘度对产生的血管壁切应力和血管壁压力的影响,以阐明与外渗的任何可能关系。通过将18 G和20 G插管放置在理想​​静脉中的两个不同方向上,对碘流量在1.5–2.2 gI / s范围内的五种不同类型的对比度进行了建模。结果表明,在相同流速下,粘度最小的造影剂产生的最大壁切应力最小,而总压力最低。这支持了经验性的临床观察和假设,即更多粘性的造影剂可导致更高比例的造影剂外渗。此外,结果支持以下临床假说:由于造影剂射流撞击血管壁,因此倾斜指向静脉壁的导管尖端始终会产生最高的最大壁切应力和总压力。

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