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Optimization of 4D vessel‐selective arterial spin labeling angiography using balanced steady‐state free precession and vessel‐encoding

机译:使用平衡的稳态自由进动和血管编码优化4D血管选择性动脉自旋标记血管造影

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摘要

Vessel‐selective dynamic angiograms provide a wealth of useful information about the anatomical and functional status of arteries, including information about collateral flow and blood supply to lesions. Conventional x‐ray techniques are invasive and carry some risks to the patient, so non‐invasive alternatives are desirable. Previously, non‐contrast dynamic MRI angiograms based on arterial spin labeling (ASL) have been demonstrated using both spoiled gradient echo (SPGR) and balanced steady‐state free precession (bSSFP) readout modules, but no direct comparison has been made, and bSSFP optimization over a long readout period has not been fully explored. In this study bSSFP and SPGR are theoretically and experimentally compared for dynamic ASL angiography. Unlike SPGR, bSSFP was found to have a very low ASL signal attenuation rate, even when a relatively large flip angle and short repetition time were used, leading to a threefold improvement in the measured signal‐to‐noise ratio (SNR) efficiency compared with SPGR. For vessel‐selective applications, SNR efficiency can be further improved over single‐artery labeling methods by using a vessel‐encoded pseudo‐continuous ASL (VEPCASL) approach. The combination of a VEPCASL preparation with a time‐resolved bSSFP readout allowed the generation of four‐dimensional (4D; time‐resolved three‐dimensional, 3D) vessel‐selective cerebral angiograms in healthy volunteers with 59 ms temporal resolution. Good quality 4D angiograms were obtained in all subjects, providing comparable structural information to 3D time‐of‐flight images, as well as dynamic information and vessel selectivity, which was shown to be high. A rapid 1.5 min dynamic two‐dimensional version of the sequence yielded similar image features and would be suitable for a busy clinical protocol. Preliminary experiments with bSSFP that included the extracranial vessels showed signal loss in regions of poor magnetic field homogeneity. However, for intracranial vessel‐selective angiography, the proposed bSSFP VEPCASL sequence is highly SNR efficient and could provide useful information in a range of cerebrovascular diseases. © 2016 The Authors. NMR in Biomedicine published by John Wiley & Sons Ltd.
机译:血管选择性动态血管造影提供了大量有关动脉的解剖和功能状态的有用信息,包括有关侧支血流和病变血供的信息。传统的X射线技术具有侵入性,并给患者带来一定的风险,因此需要非侵入性替代方法。以前,已经使用变差的梯度回波(SPGR)和平衡的稳态自由进动(bSSFP)读出模块对基于动脉自旋标记(ASL)的非造影动态MRI血管造影进行了演示,但未进行直接比较,并且bSSFP长时间读取的优化尚未得到充分研究。在这项研究中,从理论上和实验上比较了bSSFP和SPGR用于动态ASL血管造影。与SPGR不同,即使使用了相对较大的翻转角和较短的重复时间,bSSFP的ASL信号衰减率也很低,与实测信噪比(SNR)相比,其效率提高了三倍。 SPGR。对于血管选择性的应用,通过使用血管编码的伪连续ASL(VEPCASL)方法,可以比单动脉标记方法进一步提高SNR效率。将VEPCASL制剂与时间分辨的bSSFP读数结合使用,可以在时间分辨率为59μms的健康志愿者中生成四维(4D;时间分辨的三维,3D)血管选择性脑血管造影照片。在所有受试者中均获得了高质量的4D血管造影照片,可提供与3D飞行时间图像相当的结构信息,以及动态信息和血管选择性很高的事实。快速1.5µmin动态二维版本的序列产生相似的图像特征,适合繁忙的临床方案。包含颅外血管的bSSFP的初步实验表明,在磁场均匀性较差的区域中信号丢失。但是,对于颅内血管选择性血管造影,拟议的bSSFP VEPCASL序列具有很高的SNR效率,并且可以在一系列脑血管疾病中提供有用的信息。 ©2016作者。约翰·威利父子有限公司(John Wiley&Sons Ltd.)出版的《生物医学中的NMR》。

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