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首页> 外文期刊>Medical Physics >Validation of CT brain perfusion methods using a realistic dynamic head phantom.
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Validation of CT brain perfusion methods using a realistic dynamic head phantom.

机译:使用真实的动态头部模型对CT脑灌注方法进行验证。

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摘要

PURPOSE: Development and evaluation of a realistic hybrid head phantom for the validation of quantitative CT brain perfusion methods. METHODS: A combination, or hybrid, of CT images of an anthropomorphic head phantom together with clinically acquired MRI brain images was used to construct a dynamic hybrid head phantom. Essential CT imaging parameters such as spatially dependent noise, effects of resolution, tube settings, and reconstruction parameters were intrinsically included by scanning a skull phantom using CT perfusion (CTP) protocols with varying mAs. These data were combined with processed high resolution 7T clinical MRI images to include healthy and diseased brain parenchyma, as well as the cerebral vascular system. Time attenuation curves emulating contrast bolus passage based on perfusion as observed in clinical studies were added. Using the phantom, CTP images were generated using three brain perfusion calculation methods: bcSVD, sSVD, and fit-based deconvolution, and the linearity and accuracy of the three calculation methods was assessed. Dependency of perfusion outcome on calculation method was compared to clinical data. Furthermore, the potential of the phantom to optimize brain perfusion packages was investigated. RESULTS: All perfusion calculation methods showed overestimation of low perfusion values and underestimation of high perfusion values. Good correlation in behavior between phantom and clinical data was found (R2 = 0.84). CONCLUSIONS: A dynamic hybrid head phantom constructed from CT and MRI data was demonstrated to realistically represent clinical CTP studies, which is useful for assessing CT brain perfusion acquisition, reconstruction, and analysis.
机译:目的:开发和评估一种现实的混合头部模型,以验证定量CT脑灌注方法的有效性。方法:拟人化的头部模型的CT图像与临床获得的MRI脑部图像的组合或混合,用于构建动态混合头部模型。通过使用具有不同mAs的CT灌注(CTP)协议扫描颅骨体模,可以固有地包括一些基本的CT成像参数,例如空间相关的噪声,分辨率的影响,管设置和重建参数。这些数据与经过处理的高分辨率7T临床MRI图像相结合,以包括健康和患病的脑实质以及脑血管系统。添加了在临床研究中观察到的基于灌注的模拟对比推注通过的时间衰减曲线。使用幻像,使用三种脑灌注计算方法(bcSVD,sSVD和基于拟合的反卷积)生成CTP图像,并评估了这三种计算方法的线性和准确性。将灌注结果对计算方法的依赖性与临床数据进行了比较。此外,还研究了幻影优化脑灌注套件的潜力。结果:所有灌注计算方法均显示出低灌注值的高估和高灌注值的低估。发现体模与临床数据之间的行为具有良好的相关性(R2 = 0.84)。结论:从CT和MRI数据构建的动态混合头部幻像被证明可以真实地代表临床CTP研究,这对于评估CT脑灌注采集,重建和分析非常有用。

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