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Development and Application of a Multimodal Contrast Agent for SPECT/CT Hybrid Imaging

机译:SPECT / CT混合成像多峰造影剂的开发与应用

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Hybrid or multimodality imaging is often applied in order to take advantage of the unique and complementary strengths of individual imaging modalities. This hybrid noninvasive imaging approach can provide critical information about anatomical structure in combination with physiological function or targeted molecular signals. While recent advances in software image fusion techniques and hybrid imaging systems have enabled efficient multimodal imaging, accessing the full potential of this technique requires development of a new toolbox of multimodal contrast agents that enhance the imaging process. Toward that goal, we report the development of a hybrid probe for both single photon emission computed tomography (SPECT) and X-ray computed tomography (CT) imaging that facilitates high-sensitivity SPECT and high spatial resolution CT imaging. In this work, we report the synthesis and evaluation of a novel intravascular, multimodal dendrimer-based contrast agent for use in preclinical SPECT/CT hybrid imaging systems. This multimodal agent offers a long intravascular residence time (t_(1/2) = 43 min) and sufficient contrast-to-noise for effective serial intravascular and blood pool imaging with both SPECT and CT. The colocalization of the dendritic nuclear and X-ray contrasts offers the potential to facilitate image analysis and quantification by enabling correction for SPECT attenuation and partial volume errors at specified times with the higher resolution anatomic information provided by the circulating CT contrast. This may allow absolute quantification of intramyocardial blood volume and blood flow and may enable the ability to visualize active molecular targeting following clearance from the blood.
机译:为了充分利用单个成像模态的独特和互补优势,通常会使用混合或多模态成像。这种混合无创成像方法可以结合生理功能或目标分子信号提供有关解剖结构的关键信息。虽然软件图像融合技术和混合成像系统的最新进展已实现了高效的多峰成像,但要充分利用该技术的潜力,则需要开发一种新的多峰造影剂工具箱,以增强成像过程。为了实现这一目标,我们报告了一种混合探针的开发,该探针可用于单光子发射计算机断层扫描(SPECT)和X射线计算机断层摄影(CT)成像,可促进高灵敏度SPECT和高空间分辨率CT成像。在这项工作中,我们报告了用于临床前SPECT / CT混合成像系统的新型血管内,基于多峰树状聚合物的造影剂的合成和评估。这种多峰剂可提供较长的血管内停留时间(t_(1/2)= 43分钟),并具有足够的噪声比,从而可以同时使用SPECT和CT对血管内和血池进行有效的连续成像。树突状核和X射线造影剂的共定位提供潜力,可以通过循环CT造影剂提供的更高分辨率的解剖学信息,在指定的时间校正SPECT衰减和部分体积误差,从而促进图像分析和量化。这可以绝对定量心肌内的血容量和血流量,并且可以使从血液清除后可视化活性分子靶向的能力成为可能。

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