Addy Nii Okai, Ingle R Reeve, Wu Holden H, Hu Bob S, Nishimura Dwight G
Department of Electrical Engineering, Magnetic Resonance Systems Research Laboratory, Stanford University, Stanford, California, USA.
Department of Radiology, University of California, Los Angeles, California, USA.
Magn Reson Med. 2015 Sep;74(3):614-21. doi: 10.1002/mrm.25803. Epub 2015 Jul 14.
To improve the spatial/temporal resolution of whole-heart coronary MR angiography by developing a variable-density (VD) 3D cones acquisition suitable for image reconstruction with parallel imaging and compressed sensing techniques.
A VD 3D cones trajectory design incorporates both radial and spiral trajectory undersampling techniques to achieve higher resolution. This design is used to generate a VD 3D cones trajectory with 0.8 mm/66 ms isotropic spatial/temporal resolution, using a similar number of readouts as our previous fully sampled cones trajectory (1.2 mm/100 ms). Scans of volunteers and patients are performed to evaluate the performance of the VD trajectory, using non-Cartesian L1 -ESPIRiT for high-resolution image reconstruction.
With gridding reconstruction, the high-resolution scans experience an expected drop in signal-to-noise and contrast-to-noise ratios, but with L1 -ESPIRiT, the apparent noise is substantially reduced. Compared with 1.2 mm images, in each volunteer, the L1 -ESPIRiT 0.8 mm images exhibit higher vessel sharpness values in the right and left anterior descending arteries.
Coronary MR angiography with isotropic submillimeter spatial resolution and high temporal resolution can be performed with VD 3D cones to improve the depiction of coronary arteries.
通过开发一种适用于并行成像和压缩感知技术图像重建的可变密度(VD)三维锥形采集方法,提高全心冠状动脉磁共振血管造影的空间/时间分辨率。
VD三维锥形轨迹设计结合了径向和螺旋轨迹欠采样技术以实现更高分辨率。该设计用于生成具有0.8毫米/66毫秒各向同性空间/时间分辨率的VD三维锥形轨迹,使用与我们之前的全采样锥形轨迹(1.2毫米/100毫秒)相同数量的读出次数。对志愿者和患者进行扫描,使用非笛卡尔L1 - ESPIRiT进行高分辨率图像重建,以评估VD轨迹的性能。
通过网格化重建,高分辨率扫描的信噪比和对比噪声比出现预期下降,但使用L1 - ESPIRiT时,明显噪声大幅降低。与1.2毫米图像相比,在每位志愿者中,L1 - ESPIRiT 0.8毫米图像在右冠状动脉和左前降支动脉中显示出更高的血管清晰度值。
使用VD三维锥形可以进行具有各向同性亚毫米空间分辨率和高时间分辨率的冠状动脉磁共振血管造影,以改善冠状动脉的显示。