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活体小鼠中基于半自动地标配准的二维-三维图像融合:Cy5.5标记抗体的近红外荧光成像与平板容积计算机断层扫描的相关性

Semiautomatic landmark-based two-dimensional-three-dimensional image fusion in living mice: correlation of near-infrared fluorescence imaging of Cy5.5-labeled antibodies with flat-panel volume computed tomography.

作者信息

Dullin Christian, Zientkowska Marta, Napp Joanna, Missbach-Guentner Jeannine, Krell Hans-Willi, Müller Friedemann, Grabbe Eckhardt, Tietze Lutz-F, Alves Frauke

机构信息

Department of Diagnostic Radiology, University Medicine, Goettingen, Germany.

出版信息

Mol Imaging. 2009 Jan-Feb;8(1):2-14.

Abstract

Connecting fluorescence signals with anatomic structures enhances our ability to monitor biologic processes in mice. Here, we present a semiautomated approach to correlate two-dimensional (2D) noninvasive near-infrared fluorescence (NIRF) imaging with three-dimensional (3D), high-resolution, flat-panel volume computed tomography (fpVCT). We developed an algorithm to colocalize fluorescence signals of NIRF-labeled antibodies directed against matriptase and urokinase plasminogen activator receptor (uPAR) to orthotopic carcinomas in mice visualized by fpVCT. For this purpose, mice were anesthetized and fixed on a multimodality animal bed containing fiducial markers filled with iodine-containing contrast agent and fluorescent dye. After intravenous administration of contrast agent and Cy5.5-labeled antibodies, NIRF and fpVCT images were obtained, without repositioning the mice. Binding of Cy5.5-labeled matriptase-specific antibody to pancreatic tumors and Cy5.5-labeled uPAR-specific antibody to mammary carcinomas was assessed by time-domain NIRF imaging measuring the location of fluorescence intensity and its lifetime. In summary, we developed a novel 2D-3D registration technique for image fusion with NIRF imaging and fpVCT to provide complementary information in tumor models on the in vivo association of functional information with anatomic structures. The combination of fpVCT with NIRF imaging will now allow targeted and effective monitoring of preclinical tumor therapies.

摘要

将荧光信号与解剖结构相联系,可增强我们监测小鼠生物过程的能力。在此,我们提出一种半自动化方法,用于将二维(2D)无创近红外荧光(NIRF)成像与三维(3D)高分辨率平板容积计算机断层扫描(fpVCT)进行关联。我们开发了一种算法,将针对胃蛋白酶和尿激酶型纤溶酶原激活剂受体(uPAR)的NIRF标记抗体的荧光信号,与通过fpVCT可视化的小鼠原位癌进行共定位。为此,将小鼠麻醉并固定在一张包含填充有含碘造影剂和荧光染料的基准标记物的多模态动物床上。静脉注射造影剂和Cy5.5标记的抗体后,在不重新定位小鼠的情况下获取NIRF和fpVCT图像。通过测量荧光强度位置及其寿命的时域NIRF成像,评估Cy5.5标记的胃蛋白酶特异性抗体与胰腺肿瘤的结合以及Cy5.5标记的uPAR特异性抗体与乳腺癌的结合。总之,我们开发了一种用于与NIRF成像和fpVCT进行图像融合的新型2D - 3D配准技术,以在肿瘤模型中提供关于功能信息与解剖结构体内关联的补充信息。fpVCT与NIRF成像的结合现在将允许对临床前肿瘤治疗进行靶向和有效的监测。

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