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Perfusion Flow Phantoms with Randomly Oriented Micro Channels

机译:随机定向微通道的血流幻影

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Interest in ultrasound perfusion imaging has grown with the development of more sensitive algorithms to detect slow blood flow. Unfortunately, there are not many phantoms that can be used to evaluate these techniques. Some have used small linear tubes, while others have adapted dialysis cartridges. Here we propose a technique using conventional gelatin cast around a sacrificial polymer network. Specifically, we form a gelatin phantom, doped with graphite scatterers to mimic the diffuse scattering in soft tissue, around a polymer resin. The resin structure can be dissolved leaving behind a network of small randomly oriented channels that are connected to a large channel which is connected to a pump to perfuse blood mimicking fluid through the phantom. The phantoms were qualitatively demonstrated to show perfusion through visual confirmation and the speckle SNR, and speed of sound were calculated.
机译:随着更敏感的算法来检测缓慢的血液流动,对超声灌注成像的兴趣日益增长。不幸的是,没有太多的幻影可以用来评估这些技术。有些使用了小型线性管,而另一些使用了适合的透析盒。在这里,我们提出了一种使用传统明胶浇铸在牺牲聚合物网络周围的技术。具体来说,我们形成了明胶体模,掺杂了石墨散射体以模仿聚合物树脂周围软组织中的扩散散射。树脂结构可以溶解,留下小的随机取向的通道网络,该通道与大通道相连,大通道与泵相连,以通过模体灌注模仿血液的流体。定性地证明了幻影通过视觉确认显示了灌注,并且散斑SNR和声速得以计算。

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