首页> 外文会议>Machine Learning for Signal Processing, 2008 IEEE Workshop on >Convex analysis for separation of functional patterns in DCE-MRI: A longitudinal study to antiangiogenic therapy
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Convex analysis for separation of functional patterns in DCE-MRI: A longitudinal study to antiangiogenic therapy

机译:凸分析用于DCE-MRI功能模式分离:抗血管生成治疗的纵向研究

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Dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) can characterize vascular heterogeneity, and has potential utility in assessment of the efficacy of angiogenesis inhibitors in cancer treatment. Due to the heterogeneous nature of tumor microvasculature, the measured signals can be represented as the mixture of the permeability images corresponding to different perfusion rates. We recently reported a hybrid convex analysis of mixture framework for unmixing of non-negative yet dependent angiogenic permeability distributions (APDs) and perfusion time activity curves (TACs). In our last work, we presented an underlying theory to infer the concept that the TACs can be identified by finding the lateral edges of an observation-constructed convex pyramid when the well-grounded points exist for all APDs. For fulfilling this concept, a hybrid method including non-negative clustered component analysis, convex analysis, and least-squares fitting with non-negativity constraints was developed. In this paper, we use computer simulations to validate the performance of our reported framework, and further apply it to three sets of real DCE-MRI data, before and during the treatment period, for assessing the response to antiangiogenic therapy. The experimental results are not only surprisingly meaningful in biology and clinic, but also capable of reflecting the efficacy of angiogenesis inhibitors in cancer treatment.
机译:动态对比增强磁共振成像(DCE-MRI)可以表征血管异质性,并且在评估血管生成抑制剂在癌症治疗中的功效方面具有潜在的实用性。由于肿瘤微脉管系统的异质性,可以将所测量的信号表示为对应于不同灌注速率的渗透率图像的混合。我们最近报告了混合框架的混合凸分析,用于非负性但依赖的血管生成通透性分布(APDs)和灌注时间活动曲线(TACs)的混合。在我们的上一工作中,我们提出了一个基础理论来推断这样的概念,即当所有APD都存在接地良好的点时,可以通过找到由观察构造的凸棱锥的侧面边缘来识别TAC。为了实现这个概念,开发了一种混合方法,包括非负聚类分量分析,凸分析和具有非负约束的最小二乘拟合。在本文中,我们使用计算机模拟来验证所报告框架的性能,并将其进一步应用于治疗期间之前和期间的三组真实DCE-MRI数据,以评估对抗血管生成疗法的反应。实验结果不仅在生物学和临床上令人惊讶地有意义,而且能够反映血管生成抑制剂在癌症治疗中的功效。

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