首页> 外文会议>2011 8th IEEE International Symposium on Biomedical Imaging: From Nano to Macro >Toward quantitative X-ray CT phantoms of metastatic tumors using rapid prototyping technology
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Toward quantitative X-ray CT phantoms of metastatic tumors using rapid prototyping technology

机译:使用快速成型技术对转移性肿瘤进行定量X射线CT幻像

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We are seeking ground-truth 3D X-ray CT phantoms with gradations of Hounsfield units that are indistinguishable from scans of human subjects. We modified a 3D printer, a ZCorp Spectrum 510, adding an iodine-based contrast agent, and printed physical models using a powder which consists mainly of cellulose and cornstarch. We scanned these 3D models with a Siemens Somatom Definition AS 128-slice CT scanner. By adjusting the level of iodine within the model, we are able to achieve Hounsfield units as high as 1056, mimicking bone, and as low as −450, similar to pulmonary tissue. We demonstrate how to generate grayscale images within a 3D model that can be imaged using a CT scanner. Unlike solid tumor phantoms, these models can accurately mimic lesions with indistinct boundaries similar to metastatic disease. Our intent is to evaluate the accuracy of computer aided diagnosis systems.
机译:我们正在寻找具有与人类对象扫描无法区分的Hounsfield单位渐变的地面真实3D X射线CT幻像。我们修改了3D打印机,ZCorp Spectrum 510,添加了基于碘的造影剂,并使用主要由纤维素和玉米淀粉组成的粉末打印了物理模型。我们使用Siemens Somatom Definition AS 128片CT扫描仪扫描了这些3D模型。通过调整模型中的碘水平,我们可以达到类似于肺组织的Hounsfield单位(模拟骨骼)高达1056,而低至-450。我们演示了如何在可以使用CT扫描仪成像的3D模型中生成灰度图像。与实体肿瘤模型不同,这些模型可以准确模拟边界类似转移性疾病的病灶。我们的目的是评估计算机辅助诊断系统的准确性。

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