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中文摘要
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我们已经开发并验证了一系列定量灌注方法,包括双剂量方案(Christian TF等)。放射学,2004;232(3): 677 - 84)。我们证明了临床前研究的所有结论都适用于人类(Hsu L et al.)。医学影像杂志2006;23(3): 315 - 22)。先前定量灌注分析(包括我们自己的工作)的一个常见问题是依赖于兴趣区域分析或基于部门的分析。这些类型的基于扇区的分析相当于将图像分辨率降低10-50倍,并导致心肌灌注的相当块状表示。
英文摘要
We have developed and validated a series of quantitative perfusion methods including a dual bolus protocol (Christian TF et al. Radiology. 2004; 232(3):677-84). We demonstrated that all of the conclusions from the pre-clinical studies were applicable and relevant in people (Hsu L et al. J Magn Reson Imaging 2006; 23(3):315-22). One problem common to prior quantitative perfusion analyses (including our own work) has been reliance on region of interest analysis or sector-based analysis. These types of sector-based analyses are equivalent to degrading the image resolution by a factor of 10-50 and result in rather blocky representations of myocardial perfusion. Since physicians generally interpret perfusion images by watching a series of images played in a digital video loop at full resolution, we hypothesized that MRI could evaluate fully quantitative myocardial blood flow (MBF) at a pixel level based on contrast-enhanced first-pass cardiac magnetic resonance (CMR) imaging in dogs and patients. We found that myocardial blood flow could be quantified at the pixel level (32 microliters of myocardium) on CMR perfusion images and results compared well with microsphere measurements (Hsu L et al. in press). Furthermore, high-resolution pixel-wise CMR perfusion maps could detect transmural perfusion gradients. These methods may improve the objectivity of diagnosing CAD in patients.
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Cardiovascular CT Research
Area at Risk, Myocardial Infarction, and Myocardial Salvage
Cardiovascular CT Research
Quantification of Myocardial Perfusion
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