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Optical tracking of contrast medium bolus to optimize bolus shape and timing in dynamic computed tomography

机译:光学跟踪造影剂推注以优化动态计算机断层扫描中的推注形状和时间

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摘要

One of the biggest challenges in dynamic contrast-enhanced CT is the optimal synchronization of scan start and duration with contrast medium administration in order to optimize image contrast and to reduce the amount of contrast medium. We present a new optically based approach, which was developed to investigate and optimize bolus timing and shape. The time-concentration curve of an intravenously injected test bolus of a dye is measured in peripheral vessels with an optical sensor prior to the diagnostic CT scan. The curves can be used to assess bolus shapes as a function of injection protocols and to determine contrast medium arrival times. Preliminary results for phantom and animal experiments showed the expected linear behavior between dye concentration and absorption. The kinetics of the dye was compared to iodinated contrast medium and was found to be in good agreement. The contrast enhancement curves were reliably detected in three mice with individual bolus shapes and delay times of 2.1, 3.5 and 6.1 s, respectively. The optical sensor appears to be a promising approach to optimize injection protocols and contrast enhancement timing and is applicable to all modalities without implying any additional radiation dose. Clinical tests are still necessary.
机译:动态增强型CT的最大挑战之一是扫描开始和持续时间与造影剂管理的最佳同步,以优化图像对比度并减少造影剂的量。我们提出了一种新的基于光学的方法,该方法被开发用于研究和优化推注时间和形状。在诊断CT扫描之前,使用光学传感器在外周血管中测量静脉内注射的染料测试推注的时间浓度曲线。曲线可用于评估推注形状作为注射方案的函数,并确定造影剂到达时间。幻像和动物实验的初步结果显示了染料浓度和吸收之间的预期线性行为。将染料的动力学与碘化造影剂进行了比较,发现一致性良好。对比增强曲线在三只小鼠中被可靠地检测到,它们分别具有大剂量形状和分别为2.1、3.5和6.1 s的延迟时间。光学传感器似乎是优化注射方案和对比度增强定时的一种有前途的方法,并且可适用于所有模式,而不暗示任何额外的辐射剂量。仍然需要临床检查。

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