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Noncontrast free-breathing respiratory self-navigated coronary artery cardiovascular magnetic resonance angiography at 3 T using lipid insensitive binomial off-resonant excitation (LIBRE)

机译:非共聚自由呼吸呼吸道自导冠状动脉心血管心血管磁共振血管血管血管血管血管造影,使用脂质不敏感二项式脱谐激发(Libre)

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摘要

Abstract Background Robust and homogeneous lipid suppression is mandatory for coronary artery cardiovascular magnetic resonance (CMR) imaging since the coronary arteries are commonly embedded in epicardial fat. However, effective large volume lipid suppression becomes more challenging when performing radial whole-heart coronary artery CMR for respiratory self-navigation and the problem may even be exacerbated at increasing magnetic field strengths. Incomplete fat suppression not only hinders a correct visualization of the coronary vessels and generates image artifacts, but may also affect advanced motion correction methods. The aim of this study was to evaluate a recently reported lipid insensitive CMR method when applied to a noncontrast self-navigated coronary artery CMR acquisitions at 3 T, and to compare it to more conventional fat suppression techniques. Methods Lipid insensitive binomial off resonant excitation (LIBRE) radiofrequency excitation pulses were included into a self-navigated 3D radial GRE coronary artery CMR sequence at 3 T. LIBRE was compared against a conventional CHESS fat saturation (FS) and a binomial 1–180°-1 water excitation (WE) pulse. First, fat suppression of all techniques was numerically characterized using Matlab and experimentally validated in phantoms and in legs of human volunteers. Subsequently, free-breathing self-navigated coronary artery CMR was performed using the LIBRE pulse as well as FS and WE in ten healthy subjects. Myocardial, arterial and chest fat signal-to-noise ratios (SNR), as well as coronary vessel conspicuity were quantitatively compared among those scans. Results The results obtained in the simulations were confirmed by the experimental validations as LIBRE enabled near complete fat suppression for 3D radial imaging in vitro and in vivo. For self-navigated whole-heart coronary artery CMR at 3 T, fat SNR was significantly attenuated using LIBRE compared with conventional FS. LIBRE increased the right coronary artery (RCA) vessel sharpness significantly (37 ± 9% (LIBRE) vs. 29 ± 8% (FS) and 30 ± 8% (WE), both p < 0.05) and led to a significant increase in the measured RCA vessel length to (83 ± 31 mm (LIBRE) vs. 56 ± 12 mm (FS) and 59 ± 27 (WE) p < 0.05). Conclusions Applied to a respiratory self-navigated noncontrast 3D radial whole-heart sequence, LIBRE enables robust large volume fat suppression and significantly improves coronary artery image quality at 3 T compared to the use of conventional FS and WE.
机译:摘要背景是冠状动脉心血管磁共振(CMR)成像是强大的鲁棒和均匀脂质抑制,因为冠状动脉通常嵌入心外膜脂肪中。然而,当对呼吸自动导航进行径向全心脏冠状动脉CMR时,有效的大体积脂质抑制变得更具挑战性,并且在增加磁场强度时甚至可以加剧问题。不完全脂肪抑制不仅阻碍了冠状动脉血管的正确可视化并产生图像伪像,但也可能影响高级运动校正方法。该研究的目的是评估最近报告的脂质不敏感CMR方法,当施加到3T的非共同持有的自导冠状动脉CMR采集时,并将其与更传统的脂肪抑制技术进行比较。方法将脂质不敏感的二项式OFF共振激发(Libre)含有射频激发脉冲包含在自导航的3D径向GRE冠状动脉CMR序列中,在3T中,在常规棋脂肪饱和(FS)和第一型1-180°上比较了Libre。 -1水激发(我们)脉冲。首先,使用MATLAB的所有技术的脂肪抑制在数量上表征,并在幻影和人类志愿者的腿上进行实验验证。随后,使用Libre Pulse以及FS和我们在十个健康的受试者中进行自由呼吸的自捕冠状动脉CMR。在那些扫描中,数量地比较了心肌,动脉和胸部脂肪信噪比(SNR)以及冠状动物容器光纤。结果在模拟中获得的结果是通过实验验证确认,因为Libre能够在体外和体内在体外进行3D径向成像的完全脂肪抑制。对于3吨的自化全心脏冠状动脉CMR,与传统FS相比,利用Libre明显减毒FAT SNR。自由增加右冠状动脉(RCA)血管锐度显着(37±9%(Libre)与29±8%(FS)和30±8%(我们),P <0.05)并导致显着增加测量的RCA血管长度(83±31mm(Libre)与56±12 mm(Fs)和59±27(We)P <0.05)。基于使用传统FS和我们的使用,Libre可以应用于呼吸自行的非持续的3D径向全心脏序列,使鲁棒体积脂肪抑制,并在3℃下显着提高冠状动脉图像质量。

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