Department of Radiological Sciences, David Geffen School of Medicine, University of California, Los Angeles, California, USA.
Department of Bioengineering, University of California, Los Angeles, California, USA.
Magn Reson Med. 2018 Feb;79(2):867-878. doi: 10.1002/mrm.26747. Epub 2017 May 7.
To evaluate the feasibility and performance of compressed sensing (CS) with magnitude subtraction regularization in accelerating non-contrast-enhanced dynamic intracranial MR angiography (NCE-dMRA).
A CS algorithm was introduced in NCE-dMRA by exploiting the sparsity of the magnitude difference of the control and label images. The NCE-dMRA data were acquired using golden-angle stack-of-stars trajectory on six healthy volunteers and one patient with arteriovenous fistula. Images were reconstructed using (i) the proposed magnitude-subtraction CS (MS-CS); (ii) complex-subtraction CS; (iii) independent CS; and (iv) view-sharing with k-space weighted image contrast (KWIC). The dMRA image quality was compared across the four reconstruction strategies. The proposed MS-CS method was further compared with KWIC for temporal fidelity of depicting dynamic flow.
The proposed MS-CS method was able to reconstruct NCE-dMRA images with detailed vascular structures and clean background. It provided better subjective image quality than the other two CS strategies (P < 0.05). Compared with KWIC, MS-CS showed similar image quality, but reduced temporal blurring in delineating the fine distal arteries.
The MS-CS method is a promising CS technique for accelerating NCE-dMRA acquisition without compromising image quality and temporal fidelity. Magn Reson Med 79:867-878, 2018. © 2017 International Society for Magnetic Resonance in Medicine.
评估压缩感知(CS)与幅度相减正则化在加速非对比增强动态颅内磁共振血管造影(NCE-dMRA)中的可行性和性能。
通过利用控制和标记图像幅度差的稀疏性,在 NCE-dMRA 中引入 CS 算法。在六名健康志愿者和一名动静脉瘘患者中使用黄金角度堆叠星状轨迹采集 NCE-dMRA 数据。使用(i)所提出的幅度相减 CS(MS-CS);(ii)复数相减 CS;(iii)独立 CS;和(iv)与 K 空间加权图像对比度(KWIC)共享视图,重建图像。比较四种重建策略的 dMRA 图像质量。将所提出的 MS-CS 方法与 KWIC 进一步比较,以评估其描述动态流动的时间保真度。
所提出的 MS-CS 方法能够重建具有详细血管结构和干净背景的 NCE-dMRA 图像。与其他两种 CS 策略相比(P<0.05),它提供了更好的主观图像质量。与 KWIC 相比,MS-CS 显示出相似的图像质量,但在描绘精细的远端动脉时,减少了时间模糊。
MS-CS 方法是一种有前途的 CS 技术,可用于加速 NCE-dMRA 采集,而不会影响图像质量和时间保真度。磁共振医学 79:867-878, 2018。© 2017 国际磁共振学会。