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在体使用磁共振引导的扩散光学断层扫描基于总血红蛋白浓度对小动物肿瘤血管异质性水平进行区分。

Differentiation of tumor vasculature heterogeneity levels in small animals based on total hemoglobin concentration using magnetic resonance-guided diffuse optical tomography in vivo.

作者信息

Kwong Tiffany C, Hsing Mitchell, Lin Yuting, Thayer David, Unlu Mehmet Burcin, Su Min-Ying, Gulsen Gultekin

出版信息

Appl Opt. 2016 Jul 20;55(21):5479-87. doi: 10.1364/AO.55.005479.

Abstract

Insight into the vasculature of the tumor in small animals has the potential to impact many areas of cancer research. The heterogeneity of the vasculature of a tumor is directly related to tumor stage and disease progression. In this small scale animal study, we investigated the feasibility of differentiating tumors with different levels of vasculature heterogeneity in vivo using a previously developed hybrid magnetic resonance imaging (MRI) and diffuse optical tomography (DOT) system for small animal imaging. Cross-sectional total hemoglobin concentration maps of 10 Fisher rats bearing R3230 breast tumors are reconstructed using multi-wavelength DOT measurements both with and without magnetic resonance (MR) structural a priori information. Simultaneously acquired MR structural images are used to guide and constrain the DOT reconstruction, while dynamic contrast-enhanced MR functional images are used as the gold standard to classify the vasculature of the tumor into two types: high versus low heterogeneity. These preliminary results show that the stand-alone DOT is unable to differentiate tumors with low and high vascular heterogeneity without structural a priori information provided by a high resolution imaging modality. The mean total hemoglobin concentrations comparing the vasculature of the tumors with low and high heterogeneity are significant (p-value 0.02) only when MR structural a priori information is utilized.

摘要

深入了解小动物肿瘤的脉管系统有可能影响癌症研究的许多领域。肿瘤脉管系统的异质性与肿瘤分期和疾病进展直接相关。在这项小规模动物研究中,我们使用先前开发的用于小动物成像的混合磁共振成像(MRI)和扩散光学断层扫描(DOT)系统,研究了在体内区分具有不同脉管系统异质性水平的肿瘤的可行性。利用多波长DOT测量,在有和没有磁共振(MR)结构先验信息的情况下,重建了10只患有R3230乳腺肿瘤的Fisher大鼠的横断面总血红蛋白浓度图。同时采集的MR结构图像用于指导和约束DOT重建,而动态对比增强MR功能图像用作金标准,将肿瘤的脉管系统分为两种类型:高异质性与低异质性。这些初步结果表明,在没有高分辨率成像模态提供的结构先验信息的情况下,单独的DOT无法区分具有低和高血管异质性的肿瘤。只有当利用MR结构先验信息时,比较低异质性和高异质性肿瘤脉管系统的平均总血红蛋白浓度才有显著差异(p值0.02)。

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