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首页> 外文期刊>Journal of Engineering and Science in Medical Diagnostics and Therapy >Effect of Tumor Volume on Drug Delivery in Heterogeneous Vasculature of Human Brain Tumors
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Effect of Tumor Volume on Drug Delivery in Heterogeneous Vasculature of Human Brain Tumors

机译:肿瘤体积对药物输送的影响异构人类脑部肿瘤的血管

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Drug distribution in tumors is strongly dependent on tumor biological properties such as tumor volume, vasculature, and porosity. An understanding of the drug distribution pattern in tumors can help in enhancing the effectiveness of anticancer treatment. A numerical model is employed to study the distribution of contrast agent in the heterogeneous vasculature of human brain tumors of different volumes. Dynamic contrast enhanced-magnetic resonance imaging (DCE-MRI) has been done for a number of patients with different tumor volumes. Leaky tracer kinetic model (LTKM) is employed to obtain perfusion parameters from the DCE-MRI data. These parameters are used as input in the computational fluid dynamics (CFD) model to predict interstitial fluid pressure (IFP), interstitial fluid velocity (IFV), and distribution of the contrast agent in different tumors. Numerical results demonstrate that the IFP is independent of tumor volume. On the other hand, the IFV increases as the tumor volume increases. Further, the concentration of contrast agent also increases with the tumor volume. The results obtained in this work are in line with the experimental DCE-MRI data. It is observed that large volume tumors tend to retain a higher concentration of contrast agent for a longer duration of time because of large extravasation flux and slow washout as compared to smaller tumors. These results may be qualitatively extrapolated to chemotherapeutic drug delivery, implying faster healing in large volume tumors. This study helps in understanding the effect of tumor volume on the treatment outcome for a wide range of human tumors.
机译:药物在肿瘤分布强烈依赖肿瘤等肿瘤生物学性质体积,脉管系统和孔隙度。对药品分销模式的理解肿瘤可以帮助提高的有效性抗癌治疗。用来研究分布的对比在人类的异构的脉管系统脑部肿瘤不同的卷。对比enhanced-magnetic磁共振成像(DCE-MRI)已经完成的病人不同的肿瘤体积。动力学模型(LTKM)是用来获得从DCE-MRI灌注参数数据。在计算参数作为输入流体力学(CFD)模型来预测孔隙流体压力(奖学金),间质流体速度(IFV),和分布对比剂在不同的肿瘤。结果表明,奖学金项目是独立的肿瘤的体积。随着肿瘤体积增加而延长。对比剂的浓度随着肿瘤体积。在这个工作符合获得实验DCE-MRI数据。大量肿瘤倾向于保留更高对比剂浓度较长持续时间因为大量外渗通量和缓慢冲刷相比较小肿瘤。外推到化疗药物输送,这意味着更快的治愈大量肿瘤。本研究有助于理解的影响肿瘤体积的治疗结果人类肿瘤的范围。

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