Biomedical Imaging Research Institute, Cedars-Sinai Medical Center, Los Angeles, CA, USA.
Invest Radiol. 2011 Aug;46(8):515-23. doi: 10.1097/RLI.0b013e318217daee.
: To develop a flow-sensitive dephasing (FSD) preparative scheme to facilitate multidirectional flow-signal suppression in 3-dimensional balanced steady-state free precession imaging and to validate the feasibility of the refined sequence for noncontrast magnetic resonance angiography (NC-MRA) of the hand.
: A new FSD preparative scheme was developed that combines 2 conventional FSD modules. Studies using a flow phantom (gadolinium-doped water 15 cm/s) and the hands of 11 healthy volunteers (6 males and 5 females) were performed to compare the proposed FSD scheme with its conventional counterpart with respect to the signal suppression of multidirectional flow. In 9 of the 11 healthy subjects and 2 patients with suspected vasculitis and documented Raynaud phenomenon, respectively, 3-dimensional balanced steady-state free precession imaging coupled with the new FSD scheme was compared with spatial-resolution-matched (0.94 × 0.94 × 0.94 mm) contrast-enhanced magnetic resonance angiography (0.15 mmol/kg gadopentetate dimeglumine) in terms of overall image quality, venous contamination, motion degradation, and arterial conspicuity.
: The proposed FSD scheme was able to suppress 2-dimensional flow signal in the flow phantom and hands and yielded significantly higher arterial conspicuity scores than the conventional scheme did on NC-MRA at the regions of common digitals and proper digitals. Compared with contrast-enhanced magnetic resonance angiography, the refined NC-MRA technique yielded comparable overall image quality and motion degradation, significantly less venous contamination, and significantly higher arterial conspicuity score at digital arteries.
: The FSD-based NC-MRA technique is improved in the depiction of multidirectional flow by applying a 2-module FSD preparation, which enhances its potential to serve as an alternative magnetic resonance angiography technique for the assessment of hand vascular abnormalities.
开发一种流敏感去相位(FSD)预备方案,以促进三维平衡稳态自由进动成像中的多方向血流信号抑制,并验证该改良序列在手的非对比磁共振血管造影(NC-MRA)中的可行性。
开发了一种新的 FSD 预备方案,该方案结合了两个常规 FSD 模块。使用流动体模(钆掺杂水 15cm/s)和 11 名健康志愿者的手进行研究,比较了提出的 FSD 方案与其常规方案在多方向流动信号抑制方面的性能。在 9 名健康受试者和 2 名分别怀疑患有血管炎和记录到雷诺现象的患者中,将新的 FSD 方案与空间分辨率匹配(0.94×0.94×0.94mm)的对比增强磁共振血管造影(0.15mmol/kg 钆喷替酸二葡甲胺)进行比较,比较内容包括整体图像质量、静脉污染、运动伪影和动脉显影。
提出的 FSD 方案能够在流动体模和手中抑制二维流动信号,并且在 NC-MRA 中在手的常见指和固有指区域的动脉显影评分显著高于常规方案。与对比增强磁共振血管造影相比,改良的 NC-MRA 技术在数字动脉中具有相当的整体图像质量和运动伪影,显著减少的静脉污染和更高的动脉显影评分。
基于 FSD 的 NC-MRA 技术通过应用双模块 FSD 准备得到了改进,在描绘多方向血流方面得到了改善,增强了其作为评估手部血管异常的磁共振血管造影替代技术的潜力。