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In-vitro investigation of the relationship between microvascular structure and ultrasound contrast agent dynamics

机译:微血管结构与超声造影剂动态关系的体外研究

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Prostate cancer (PCa) is the second leading cause of cancer mortality in men in western countries. Tumor-driven angiogenesis is a recognized hallmark of cancer. Typical features of angiogenic vasculature include increased microvascular density (MVD), smaller vessel diameter and higher tortuosity, resulting in complex blood-flow patterns. Dynamic contrast-enhanced ultrasound (DCE-US) widely provides a noninvasive diagnostic tool for PCa detection with the passage of ultrasound contrast agents (UCAs) through the prostate. Analysis of the UCA dispersion kinetics in the tumor vasculature has shown promise for PCa diagnostics, but a clear link between the estimated kinetics parameters and the underlying microvascular structure is still lacking. In this work, modeling the prostate microvasculature as a porous medium, we developed tissue-mimicking phantoms with variable pore size, representing different MVD and vessel diameter. The UCA flow through the phantoms was recorded by DCE-US, and UCA velocity and dispersion coefficient were estimated by model-based deconvolution. In general, phantoms reproducing increased MVD and smaller vessel diameter lead to increased velocity and decreased dispersion coefficient. This is line with our in-vivo findings in PCa patients. Further validation will be performed by insilico simulation and more complex in-vitro phantoms in the future.
机译:前列腺癌(PCA)是西方男性癌症死亡率的第二个主要原因。肿瘤驱动的血管生成是癌症的公认标志。血管生成脉管系统的典型特征包括增加的微血管密度(MVD),较小的血管直径和较高的曲折,导致复杂的血流模式。动态对比度增强超声(DCE-US)广泛为PCA检测广泛提供了通过前列腺造影剂(UCAS)通过前列腺检测的非侵入性诊断工具。肿瘤脉管系统中的UCA色散动力学分析表明了PCA诊断的希望,但估计的动力学参数与潜在的微血管结构之间的明确联系仍然缺乏。在这项工作中,将前列腺微血管为多孔介质建模,我们开发了具有可变孔径的组织模拟幽灵,代表不同的MVD和容器直径。通过DCE-US记录通过幽灵的UCA流动,并且通过基于模型的解构估计UCA速度和分散系数。通常,幻影再现增加MVD和较小的血管直径导致速度增加和分散系数降低。这是我们在PCA患者的体内发现的系列。进一步的验证将通过未来的Insilico模拟和更复杂的体外幻影进行。

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