Institute of Radiology, University Hospital Erlangen, Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), Erlangen, Germany.
Magnetic Resonance, Siemens Healthcare GmbH, Erlangen, Germany.
MAGMA. 2024 Apr;37(2):257-272. doi: 10.1007/s10334-024-01149-8. Epub 2024 Feb 17.
To compensate subject-specific field inhomogeneities and enhance fat pre-saturation with a fast online individual spectral-spatial (SPSP) single-channel pulse design.
The RF shape is calculated online using subject-specific field maps and a predefined excitation k-space trajectory. Calculation acceleration options are explored to increase clinical viability. Four optimization configurations are compared to a standard Gaussian spectral selective pre-saturation pulse and to a Dixon acquisition using phantom and volunteer (N = 5) data at 1.5 T with a turbo spin echo (TSE) sequence. Measurements and simulations are conducted across various body parts and image orientations.
Phantom measurements demonstrate up to a 3.5-fold reduction in residual fat signal compared to Gaussian fat saturation. In vivo evaluations show improvements up to sixfold for dorsal subcutaneous fat in sagittal cervical spine acquisitions. The versatility of the tailored trajectory is confirmed through sagittal foot/ankle, coronal, and transversal cervical spine experiments. Additional measurements indicate that excitation field (B1) information can be disregarded at 1.5 T. Acceleration methods reduce computation time to a few seconds.
An individual pulse design that primarily compensates for main field (B0) inhomogeneities in fat pre-saturation is successfully implemented within an online "push-button" workflow. Both fat saturation homogeneity and the level of suppression are improved.
通过快速在线单通道脉冲设计实现个体谱-空间(SPSP)补偿,以增强脂肪预饱和。
使用基于个体的磁场图和预设的激发 k 空间轨迹在线计算 RF 形状。探索计算加速选项以提高临床可行性。将四种优化配置与标准高斯谱选择性预饱和脉冲以及 Dixon 采集进行比较,使用 Phantom 和志愿者(N=5)在 1.5 T 下进行磁共振成像,使用 Turbo 自旋回波(TSE)序列。在不同的身体部位和图像方位进行测量和模拟。
Phantom 测量表明,与高斯脂肪饱和相比,残留脂肪信号减少了 3.5 倍。体内评估表明,矢状位颈椎采集时,背侧皮下脂肪的改善高达六倍。通过矢状位足部/踝关节、冠状位和横断位颈椎实验证实了定制轨迹的多功能性。其他测量表明,在 1.5 T 时可以忽略激励场(B1)信息。加速方法将计算时间缩短到几秒钟。
成功地在在线“一键式”工作流程中实现了一种主要补偿脂肪预饱和中主磁场(B0)不均匀性的个体脉冲设计。脂肪饱和均匀性和抑制水平都得到了提高。