Greschus Susanne, Kiessling Fabian, Lichy Matthias P, Moll Jens, Mueller Margareta M, Savai Rajkumar, Rose Frank, Ruppert Clemens, Günther Andreas, Luecke Marcus, Fusenig Norbert E, Semmler Wolfhard, Traupe Horst
Department of Neuroradiology, University Giessen, Klinikstrasse 29, Giessen 35385, Germany.
Neoplasia. 2005 Aug;7(8):730-40. doi: 10.1593/neo.05160.
Noninvasive radiologic imaging has recently gained considerable interest in basic and preclinical research for monitoring disease progression and therapeutic efficacy. In this report, we introduce flat-panel volumetric computed tomography (fpVCT) as a powerful new tool for noninvasive imaging of different organ systems in preclinical research. The three-dimensional visualization that is achieved by isotropic high-resolution datasets is illustrated for the skeleton, chest, abdominal organs, and brain of mice. The high image quality of chest scans enables the visualization of small lung nodules in an orthotopic lung cancer model and the reliable imaging of therapy side effects such as lung fibrosis. Using contrast-enhanced scans, fpVCT displayed the vascular trees of the brain, liver, and kidney down to the subsegmental level. Functional application of fpVCT in dynamic contrast-enhanced scans of the rat brain delivered physiologically reliable data of perfusion and tissue blood volume. Beyond scanning of small animal models as demonstrated here, fpVCT provides the ability to image animals up to the size of primates.
无创放射成像最近在基础研究和临床前研究中引起了广泛关注,用于监测疾病进展和治疗效果。在本报告中,我们介绍平板容积计算机断层扫描(fpVCT),这是一种用于临床前研究中不同器官系统无创成像的强大新工具。通过各向同性高分辨率数据集实现的三维可视化展示了小鼠的骨骼、胸部、腹部器官和大脑。胸部扫描的高图像质量能够在原位肺癌模型中可视化小的肺结节,并可靠地成像治疗副作用,如肺纤维化。使用对比增强扫描,fpVCT可以显示大脑、肝脏和肾脏的血管树直至亚段水平。fpVCT在大鼠大脑动态对比增强扫描中的功能应用提供了灌注和组织血容量的生理可靠数据。除了此处展示的小动物模型扫描外,fpVCT还能够对灵长类动物大小的动物进行成像。