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Flow Measurements in a Blood-Perfused Collagen Vessel Using X-Ray Micro-Particle Image Velocimetry

机译:使用X射线微颗粒图像测速仪在灌注胶原蛋白的血管中进行流量测量

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摘要

Blood-perfused tissue models are joining the emerging field of tumor engineering because they provide new avenues for modulation of the tumor microenvironment and preclinical evaluation of the therapeutic potential of new treatments. The characterization of fluid flow parameters in such in-vitro perfused tissue models is a critical step towards better understanding and manipulating the tumor microenvironment. However, traditional optical flow measurement methods are inapplicable because of the opacity of blood and the thickness of the tissue sample. In order to overcome the limitations of optical method we demonstrate the feasibility of using phase-contrast x-ray imaging to perform microscale particle image velocimetry (PIV) measurements of flow in blood perfused hydrated tissue-representative microvessels. However, phase contrast x-ray images significantly depart from the traditional PIV image paradigm, as they have high intensity background, very low signal-to-noise ratio, and volume integration effects. Hence, in order to achieve accurate measurements special attention must be paid to the image processing and PIV cross-correlation methodologies. Therefore we develop and demonstrate a methodology that incorporates image preprocessing as well as advanced PIV cross-correlation methods to result in measured velocities within experimental uncertainty.
机译:血液灌输的组织模型正在加入肿瘤工程的新兴领域,因为它们为调节肿瘤微环境提供了新途径,并为新疗法的治疗潜力进行了临床前评估。在这种体外灌注组织模型中,流体流动参数的表征是朝更好地理解和操纵肿瘤微环境迈出的关键一步。然而,由于血液的不透明性和组织样本的厚度,传统的光流测量方法不适用。为了克服光学方法的局限性,我们证明了使用相衬x射线成像技术进行血液灌注水合组织代表性微血管中血流的微尺度颗粒图像测速(PIV)测量的可行性。但是,相衬X射线图像具有高强度背景,极低的信噪比和体积积分效应,因此大大偏离了传统的PIV图像范式。因此,为了获得精确的测量结果,必须特别注意图像处理和PIV互相关方法。因此,我们开发并演示了一种结合了图像预处理和先进的PIV互相关方法的方法,以在实验不确定性范围内产生测得的速度。

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