Biomedizinische NMR Forschungs GmbH am Max-Planck-Institut für biophysikalische Chemie, 37070, Göttingen, Germany.
J Cardiovasc Magn Reson. 2013 Sep 12;15(1):79. doi: 10.1186/1532-429X-15-79.
While cardiovascular magnetic resonance (CMR) commonly employs ECG-synchronized cine acquisitions with balanced steady-state free precession (SSFP) contrast at 1.5 T, recent developments at 3 T demonstrate significant potential for T1-weighted real-time imaging at high spatiotemporal resolution using undersampled radial FLASH. The purpose of this work was to combine both ideas and to evaluate a corresponding real-time CMR method at 1.5 T with SSFP contrast.
Radial gradient-echo sequences with fully balanced gradients and at least 15-fold undersampling were implemented on two CMR systems with different gradient performance. Image reconstruction by regularized nonlinear inversion (NLINV) was performed offline and resulted in real-time SSFP CMR images at a nominal resolution of 1.8 mm and with acquisition times of 40 ms.
Studies of healthy subjects demonstrated technical feasibility in terms of robustness and general image quality. Clinical applicability with access to quantitative evaluations (e.g., ejection fraction) was confirmed by preliminary applications to 27 patients with typical indications for CMR including arrhythmias and abnormal wall motion. Real-time image quality was slightly lower than for cine SSFP recordings, but considered diagnostic in all cases.
Extending conventional cine approaches, real-time radial SSFP CMR with NLINV reconstruction provides access to individual cardiac cycles and allows for studies of patients with irregular heartbeat.
虽然心血管磁共振(CMR)通常在 1.5 T 时采用心电图同步电影采集和平衡稳态自由进动(SSFP)对比,但在 3 T 时的最新发展表明,使用欠采样径向 FLASH 以高时空分辨率进行 T1 加权实时成像具有很大潜力。这项工作的目的是结合这两个想法,并评估 1.5 T 时具有 SSFP 对比的相应实时 CMR 方法。
在两台具有不同梯度性能的 CMR 系统上实现了具有完全平衡梯度和至少 15 倍欠采样的径向梯度回波序列。通过正则化非线性反演(NLINV)进行离线图像重建,可在名义分辨率为 1.8 mm 和采集时间为 40 ms 的情况下生成实时 SSFP CMR 图像。
对健康受试者的研究表明,该技术在稳健性和总体图像质量方面具有可行性。通过初步应用于 27 例具有 CMR 典型适应证(包括心律失常和异常壁运动)的患者,证实了具有定量评估(如射血分数)的临床适用性。实时图像质量略低于电影 SSFP 记录,但在所有情况下均被认为具有诊断价值。
通过扩展传统的电影方法,使用 NLINV 重建的实时径向 SSFP CMR 可获取单个心动周期,并可用于研究心跳不规则的患者。