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首页> 外文期刊>Journal of neuro-oncology. >Effect of contrast leakage on the detection of abnormal brain tumor vasculature in high-grade glioma
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Effect of contrast leakage on the detection of abnormal brain tumor vasculature in high-grade glioma

机译:造影剂泄漏对高级别脑胶质瘤脑肿瘤血管异常检测的影响

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摘要

Abnormal brain tumor vasculature has recently been highlighted by a dynamic susceptibility contrast (DSC) MRI processing technique. The technique uses independent component analysis (ICA) to separate arterial and venous perfusion. The overlap of the two, i.e. arterio-venous overlap or AVOL, preferentially occurs in brain tumors and predicts response to anti-angiogenic therapy. The effects of contrast agent leakage on the AVOL biomarker have yet to be established. DSC was acquired during two separate contrast boluses in ten patients undergoing clinical imaging for brain tumor diagnosis. Three components were modeled with ICA, which included the arterial and venous components. The percentage of each component as well as a third component were determined within contrast enhancing tumor and compared. AVOL within enhancing tumor was also compared between doses. The percentage of enhancing tumor classified as not arterial or venous and instead into a third component with contrast agent leakage apparent in the time-series was significantly greater for the first contrast dose compared to the second. The amount of AVOL detected within enhancing tumor was also significantly greater with the second dose compared to the first. Contrast leakage results in large signal variance classified as a separate component by the ICA algorithm. The use of a second dose mitigates the effect and allows measurement of AVOL within enhancement.
机译:动态磁化率对比(DSC)MRI处理技术近来突显了异常的脑肿瘤脉管系统。该技术使用独立成分分析(ICA)来分离动脉和静脉灌注。两者的重叠,即动静脉重叠或AVOL,优先发生在脑肿瘤中并预测对抗血管生成疗法的反应。造影剂泄漏对AVOL生物标志物的影响尚未确定。在10例接受脑部肿瘤诊断的临床成像的患者中,在两次单独的造影剂治疗中获得了DSC。使用ICA对三个组件进行了建模,其中包括动脉和静脉组件。在增强对比的肿瘤内确定并比较每种成分以及第三种成分的百分比。还在剂量之间比较了增强肿瘤内的AVOL。与第二次对比剂量相比,第一次对比剂量在时间序列中明显分为造影剂渗漏的不是动脉或静脉,而是归为第三种成分的增强肿瘤的百分比明显更高。与第一剂相比,第二剂中增强肿瘤内检测到的AVOL量也明显更大。对比度泄漏导致较大的信号方差,被ICA算法归类为单独的组件。第二剂量的使用减轻了该作用,并允许在增强内测量AVOL。

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