首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Neurovascular stent artifacts in 3D‐TOF and 3D‐PCMRI: Influence of stent design on flow measurement
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Neurovascular stent artifacts in 3D‐TOF and 3D‐PCMRI: Influence of stent design on flow measurement

机译:3D-TOF和3D-PCMRI中的神经血管支架伪影:支架设计对流量测量的影响

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Purpose The morphological and hemodynamic evaluations of neurovascular diseases treated with stents would benefit from noninvasive imaging techniques such as 3D time‐of‐flight MRI (3D‐TOF) and 3D phase contrast MRI (3D‐PCMRI). For this purpose, a comprehensive evaluation of the stent artifacts and their impact on the flow measurement is critical. Methods The artifacts of a representative sample of neurovascular stents were evaluated in vitro with 3D‐TOF and 3D‐PCMRI sequences. The dependency of the artifacts with respect to the orientation was analyzed for each stent design as well as the impact on the flow measurement accuracy. Furthermore, the 3D‐PCMRI data of four patients carrying intracranial aneurysms treated with flow diverter stents were analyzed as illustrative examples. Results The stent artifacts were mainly confined to the stent lumen therefore indicating the leading role of shielding effect. The influence of the stent design and its orientation with respect to the transmitting MR coils were highlighted. The artifacts impacted the 3D‐PCMRI velocities mainly in the low magnitude domains, which were discarded from the analysis ensuring reliable near‐stent velocities. The feasibility of in‐stent flow measurements was confirmed in vivo on two patients who showed strong correlation between flow and geometric features. In two other patients, the consistency of out‐of‐stent velocities was verified qualitatively through intra‐aneurysmal streamlines except when susceptibility artifacts occurred. Conclusion The present results motivate the conception of low inductance or nonconductive stent design. Furthermore, the feasibility of near‐stent 3D‐PCMRI measurements opens the door to clinical applications like the post‐treatment follow‐up of stenoses or intracranial aneurysms.
机译:目的,用支架治疗的神经血管疾病的形态学和血液动力学评估将受益于非侵入性成像技术,例如飞行时间的3D时间MRI(3D-TOF)和3D相位对比MRI(3D-PCMRI)。为此目的,对支架伪影的综合评价及其对流量测量的影响至关重要。方法用3D-TOF和3D-PCMRI序列体外评估神经血管支架代表性样品的伪影。为每个支架设计分析了伪影对方向的依赖性,以及对流量测量精度的影响。此外,分析了一种携带流动分解支架颅内动脉瘤的四个患者的3D-PCMRI数据作为说明性实施例。结果支架伪像主要限制在支架内腔,因此表明屏蔽效果的主要作用。突出了支架设计及其方向对传输MR线圈的影响。工件主要在低幅度域中影响3D-PCMRI速度,从分析中丢弃确保可靠的近支架速度。在两种患者中,在体内确认了支架流量测量的可行性,在两种患者中显示出流量和几何特征强的相关性。在另外两个患者中,除了发生易感性伪影时,通过内肌瘤流动素定性地验证了支架速度的一致性。结论本结果激发了低电感或非导电支架设计的概念。此外,近支架3D-PCMRI测量的可行性为临床应用打开了门的门,如狭窄或颅内动脉瘤的后处理。

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