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A kinetic model for vessel-encoded dynamic angiography with arterial spin labeling.

机译:带有动脉自旋标记的血管编码动态血管造影的动力学模型。

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摘要

The ability to visualize blood flow in a vessel-selective manner is of importance in a range of cerebrovascular diseases. Conventional X-ray methods are invasive and carry risks to the patient. Recently, a noninvasive dynamic angiographic MRI-based technique has been proposed using vessel-encoded pseudocontinuous arterial spin labeling, yielding vessel-selective angiograms of the four main brain-feeding arteries. In this study, a novel kinetic model for the signal evolution in such acquisitions is derived and applied to healthy volunteers and to a patient with Moya-Moya disease. The model incorporates bolus dispersion, T(1) decay and radio frequency effects and is applicable to other angiographic methods based on continuous or pseudocontinuous arterial spin labeling. The model fits the data well in all subjects and yields parametric maps relating to blood volume, arrival time, and dispersion, changes to which may indicate disease. These maps are also used to generate synthesized images of blood inflow without bias from T(1) decay and radio frequency effects, greatly improving collateral vessel visibility in the patient with Moya-Moya disease. Relative volume flow rates in downstream vessels are also quantified, showing the relative importance of each feeding artery. This framework is likely to be of use in assessing collateral blood flow in patient groups.
机译:以血管选择性方式可视化血流的能力在一系列脑血管疾病中很重要。常规的X射线方法具有侵入性,并给患者带来风险。最近,已经提出了一种基于无创动态血管造影MRI的技术,该技术使用了血管编码的伪连续动脉自旋标记,可产生四个主要脑供血动脉的血管选择性血管造影照片。在这项研究中,推导了在这种采集中信号演化的新型动力学模型,并将其应用于健康志愿者和莫亚莫亚病患者。该模型结合了大剂量弥散,T(1)衰减和射频效应,适用于基于连续或伪连续动脉自旋标记的其他血管造影方法。该模型很好地拟合了所有受试者的数据,并得出了与血容量,到达时间和分散有关的参数图,这些变化可能表示疾病。这些图还用于生成血液流入的合成图像,而不受T(1)衰减和射频效应的影响,从而大大改善了Moya-Moya病患者的侧支血管可视性。还量化了下游血管中的相对体积流速,显示了每个进食动脉的相对重要性。该框架可能可用于评估患者组的侧支血流。

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