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Imaging and Radiochemistry Core

Imaging and Radiochemistry Core
成像和放射化学核心
批准号:
7102448
负责人:
PAT B ZANZONICO
金额:
$14.45万
依托单位国家:
美国
项目类别:
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-04-01 至 2011-03-31

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中文摘要
翻译
目前P01申请的中心假设是,肿瘤乏氧的非侵入性成像的发展将改善实体瘤患者的管理,并促进我们对肿瘤乏氧图像背后的分子和生物学机制的理解。提出了一种综合比较正电子发射断层成像(PET)和核磁共振成像(MRI)的多模式成像方法。对于PET成像,将用我们的回旋加速器合成和研究两种有希望的针对缺氧细胞的放射性示踪剂(124I-IAZG和18F-FMISO)和相关的反式基因和(124I-FIAU和18F-FeAu),而对于核磁共振,不同的参数指标(如血流灌注、乳酸水平)将被评估为肿瘤缺氧的替代标志。因此,成像和放射化学核心C的功能是为研究项目和其他核心提供最先进的体内和体外成像能力和正电子发射放射性示踪剂--包括实验室研究中的小动物(啮齿动物)和临床研究中的人类受试者。在……里面 除了可用于临床研究的新型PET-CT扫描仪外,我们的Core还提供一系列最先进的小动物成像和支持系统-microPET、MS生物发光和荧光光学成像、X-SPECT microSPECT-microCT、microCAT II microCT、4.7-T 40厘米直径和7.0-T 31厘米布鲁克核磁共振系统、高分辨率荧光板数字放射自显像仪和数字显微镜。我们计划项目的一个关键组成部分,尤其是这个核心,是我们正在开发一种实用的、普遍适用的方法--包括所有必要的硬件和软件--用于动物研究中的真正多通道以及通道内图像配准。我们正在开发的图像配准方法提供了在广泛的动态范围内精确配准图像的能力-从超高分辨率的数字放射自显影(<100(?m)和组织切片图像(<10?m)到较粗的分辨率(大约100?m(核磁共振、微CT)到大约1,000 MUM(microPET,microSPECT))活体图像。通过直接比较明确配准的 这些多种模式不仅将加快新示踪剂和新成像和图像分析方法的验证,而且可能 还对肿瘤的潜在生物学(如相互作用的效果)提供了独特的、在治疗上重要的见解 葡萄糖代谢、血流、缺氧、乳酸水平等因素。)肿瘤对治疗的反应。
英文摘要
The central hypothesis of the current P01 Application is that the development of non-invasive imaging of tumor hypoxia will lead to improved management of solid-tumor patients and advance our understanding of the molecular and biological mechanisms underlying tumor hypoxia images. A multi-modality approach, integrating and comparing positron emission tomography (PET) and nuclear magnetic resonance (NMR) imaging, is proposed. For PET imaging, two promising radiotracers that specifically target hypoxic cells (124I-IAZG and 18F-FMISO) and relevant trans-genes and (124I-FIAU and 18F-FEAU) will be synthesized with our cyclotron and investigated, and for NMR, different parametric indices (e.g. perfusion, lactate levels) will be evaluated as surrogate markers of tumor hypoxia. The function of Core C, the Imaging and Radiochemistry Core, is to therefore provide state-of-the-art in vivo and ex vivo imaging capabilities and positron-emitting radiotracers - both for small animals (rodents) in laboratory investigations and for human subjects in clinical investigations - for the Research Projects and the other Cores. In addition to the availability of new PET-CT scanners for clinical studies, our Core provides an array of state-of-the art small-animal imaging and support systems - microPET, MS bioluminescence and fluorescence optical imaging, X-SPECT microSPECT-microCT, microCAT II microCT, 4.7-T 40-cm bore and 7.0-T 31-cm Bruker NMR systems, high-resolution phosphor-plate digital autoradiograph, and digital microscopy. A key component of our Program Project and, in particular, this Core is our ongoing development of a practical, generally applicable method - including all necessary hardware and software - for truly multi-modality as well as intra-modality image registration in animal studies. The image registration method we are developing provides the capability of precise image registration over a broad "dynamic range" - from ultra-high-resolution digital autoradiograms (< 100 (mu m) and histological-section images (< 10 mu m) to coarser-resolution (approximately 100 mu m (NMR, microCT) to approximately 1,000 mu m (microPET, microSPECT)) in vivo images. Corroboration by direct comparison of unambiguously registered images across these multiple modalities will not only expedite validation of new tracers and new imaging and image-analysis methods but may also provide unique, therapeutically important insights into the underlying biology of tumors (such as the effect of interacting factors such as glucose metabolism, blood flow, hypoxia, lactate levels, etc.) on tumor response to therapy.
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The X-Rad SmART+ Biological Irradiator for Pre-Clinical Oncology Research
Imaging and Radiochemistry Core
The Ivis Spectrum CT for Pre-Clinical Oncology Research
The Inveon PET/CT for Pre-Clinical Oncology Research
  • 批准号:
    8334760
  • 项目类别:
  • 资助金额:
    $102.78万
  • 财政年份:
    2012
  • 负责人:
    PAT B ZANZONICO
  • 依托单位:
海外基金