Stinson Eric G, Borisch Eric A, Johnson Casey P, Trzasko Joshua D, Young Phillip M, Riederer Stephen J
Mayo Clinic, MR Laboratory, Rochester, Minnesota, USA.
J Magn Reson Imaging. 2014 May;39(5):1161-70. doi: 10.1002/jmri.24266. Epub 2013 Jul 29.
To describe and evaluate the method we refer to as "vascular masking" for improving signal-to-noise ratio (SNR) retention in sensitivity encoding (SENSE)-accelerated contrast-enhanced magnetic resonance angiography (CE-MRA).
Vascular masking is a technique that restricts the SENSE unfolding of an accelerated subtraction angiogram to the voxels within the field of view known to have enhancing signal. This is a more restricted voxel set than that identified with conventional masking, which excludes only voxels in the air around the object. Thus, improved retention of SNR is expected. Evaluation was done in phantom and in vivo studies by comparing SNR and the g-factor in results reconstructed using vascular versus conventional masking. A radiological evaluation was also performed comparing conventional and vascular masking in R = 8 accelerated CE-MRA studies of the thighs (n = 21) and calves (n = 13).
Images reconstructed with vascular masking showed a significant reduction in g-factor and improved retention of SNR versus those reconstructed with conventional masking. In the radiological evaluation, vascular masking consistently provided reduced background noise, improved luminal signal smoothness, and better small vessel conspicuity.
Vascular masking provides improved SNR retention and improved depiction of the vasculature in accelerated, subtraction 3D CE-MRA of the thighs and calves.
描述并评估我们称为“血管掩蔽”的方法,以提高敏感性编码(SENSE)加速对比增强磁共振血管造影(CE-MRA)中的信噪比(SNR)保留率。
血管掩蔽是一种技术,它将加速减影血管造影的SENSE展开限制在已知具有增强信号的视野内的体素上。这是一个比传统掩蔽所识别的体素集更受限的体素集,传统掩蔽仅排除物体周围空气中的体素。因此,预计SNR保留率会提高。通过比较使用血管掩蔽与传统掩蔽重建结果中的SNR和g因子,在体模和体内研究中进行了评估。还在大腿(n = 21)和小腿(n = 13)的R = 8加速CE-MRA研究中,对传统掩蔽和血管掩蔽进行了放射学评估比较。
与使用传统掩蔽重建的图像相比,使用血管掩蔽重建的图像显示g因子显著降低,SNR保留率提高。在放射学评估中,血管掩蔽始终能降低背景噪声,改善管腔信号平滑度,并提高小血管的显影度。
在大腿和小腿的加速、减影3D CE-MRA中,血管掩蔽可提高SNR保留率,并改善血管系统的描绘。