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Bridging cell-scale simulations and radiologic images to explain short-time intratumoral oxygen fluctuations

机译:桥接细胞尺度模拟和放射学图像,以解释短时危险氧气波动

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Radiologic images provide a way to monitor tumor development and its response to therapies in a longitudinal and minimally invasive fashion. However, they operate on a macroscopic scale (average value per voxel) and are not able to capture microscopic scale (cell-level) phenomena. Nevertheless, to examine the causes of frequent fast fluctuations in tissue oxygenation, models simulating individual cells’ behavior are needed. Here, we provide a link between the average data values recorded for radiologic images and the cellular and vascular architecture of the corresponding tissues. Using hybrid agent-based modeling, we generate a set of tissue morphologies capable of reproducing oxygenation levels observed in radiologic images. We then use these in silico tissues to investigate whether oxygen fluctuations can be explained by changes in vascular oxygen supply or by modulations in cellular oxygen absorption. Our studies show that intravascular changes in oxygen supply reproduce the observed fluctuations in tissue oxygenation in all considered regions of interest. However, larger-magnitude fluctuations cannot be recreated by modifications in cellular absorption of oxygen in a biologically feasible manner. Additionally, we develop a procedure to identify plausible tissue morphologies for a given temporal series of average data from radiology images. In future applications, this approach can be used to generate a set of tissues comparable with radiology images and to simulate tumor responses to various anti-cancer treatments at the tissue-scale level.
机译:放射学图像提供了一种监测肿瘤发展的方法及其对纵向和微创时装的疗法的响应。然而,它们在宏观尺度(每个体素的平均值)上操作,并且不能捕获微观尺度(细胞级)现象。然而,为了检查组织氧气中频繁的快速波动的原因,需要模拟各个细胞行为的模型。这里,我们提供用于放射学图像的平均数据值与相应组织的细胞和血管结构之间的链路。使用基于杂化剂的造型,我们产生能够再现在放射学图像中观察到的氧合水平的一组组织形态。然后我们在硅组织中使用这些来研究氧气波动是否可以通过血管氧气供应的变化或通过细胞氧气吸收的调节来解释。我们的研究表明,氧气供应的血管内变化再现在所有被认为的感兴趣区域中的组织氧气中观察到的波动。然而,不能通过在生物可行的方式中通过氧气吸收的修改来重新创建较大幅度波动。此外,我们制定一种程序,以鉴定来自放射学图像的给定时间系列的呈现时间系列的合理组织形态。在未来的应用中,这种方法可用于产生与放射学图像相当的一组组织,并在组织尺度水平下模拟对各种抗癌治疗的肿瘤反应。

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