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Deriving a Blood-Mimicking Fluid for Particle Image Velocimetry in Sylgard-184 Vascular Models

机译:用于Sylgard-184血管模型中的粒子图像VeLocimetry的血液模拟液体

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A new blood-mimicking fluid (BMF) has been developed for particle image velocimetry (PIV), which enables flow studies in vascular models (phantoms). A major difficulty in PIV that affects measurement accuracy is the refraction and distortion of light passing through the interface between the model and the fluid, due to the difference in refractive index (n) between the two materials. The problem can be eliminated by using a fluid with a refractive index matching that of the model Such fluids are not commonly available, especially for vascular research where the fluid should also have a viscosity similar to human blood. In this work, a blood-mimicking fluid, composed of water (47.38% by weight), glycerol (36.94% by weight) and sodium iodide salt (15.68% by weight), was developed for compatibility with our silicone (Sylgard 184; n = 1.414) phantoms. The fluid exhibits a dynamic viscosity of 4.31±0.03 cP which lies within the range of human blood viscosity (4.4±0.6 cP). Both refractive index and viscosity were attained at 22.2±0.2°C, which is a feasible room temperature, thus eliminating the need for a temperature-control system. The fluid will be used to study hemodynamics in vascular flow models fabricated from Sylgard 184.
机译:已经开发出一种新的血模液(BMF)用于粒子图像VELOCIMETRY(PIV),其能够在血管模型(幽灵)中进行流动研究。 PIV中的主要困难是影响测量精度的折射率和通过模型和流体之间的界面的光的折射和失真,由于两种材料之间的折射率(n)差异。通过使用具有折射率的流体可以消除该问题,该折射率匹配这种流体不可用的折射率,特别是对于血管研究,其中流体也应该具有类似于人体血液的粘度。在这项工作中,由水(47.38重量%),甘油(36.94重量%)和碘化钠(重量碘酸钠)组成的血液模拟液体用于与我们的硅氧烷相容(Sylgard 184; n; = 1.414)幽灵。该流体表现出动态粘度为4.31±0.03cp,其位于人血粘度范围内(4.4±0.6cp)。折射率和粘度均达到22.2±0.2℃,这是可行的室温,从而消除了对温度控制系统的需求。流体将用于研究由Sylgard 184制造的血管流动模型中的血流动力学。

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