Department of Information Engineering, University of Padua, Padua, Italy.
Philips Research, Eindhoven, The Netherlands.
Physiol Meas. 2024 Apr 26;45(4). doi: 10.1088/1361-6579/ad3d27.
In cardiovascular magnetic resonance imaging, synchronization of image acquisition with heart motion (called) is performed by detecting R-peaks in electrocardiogram (ECG) signals. Effective gating is challenging with 3T and 7T scanners, due to severe distortion of ECG signals caused by magnetohydrodynamic effects associated with intense magnetic fields. This work proposes an efficient retrospective gating strategy that requires no prior training outside the scanner and investigates the optimal number of leads in the ECG acquisition set.The proposed method was developed on a data set of 12-lead ECG signals acquired within 3T and 7T scanners. Independent component analysis is employed to effectively separate components related with cardiac activity from those associated to noise. Subsequently, an automatic selection process identifies the components best suited for accurate R-peak detection, based on heart rate estimation metrics and frequency content quality indexes.The proposed method is robust to different B0 field strengths, as evidenced by R-peak detection errors of 2.4 ± 3.1 ms and 10.6 ± 15.4 ms for data acquired with 3T and 7T scanners, respectively. Its effectiveness was verified with various subject orientations, showcasing applicability in diverse clinical scenarios. The work reveals that ECG leads can be limited in number to three, or at most five for 7T field strengths, without significant degradation in R-peak detection accuracy.The approach requires no preliminary ECG acquisition for R-peak detector training, reducing overall examination time. The gating process is designed to be adaptable, completely blind and independent of patient characteristics, allowing wide and rapid deployment in clinical practice. The potential to employ a significantly limited set of leads enhances patient comfort.
在心血管磁共振成像中,通过检测心电图 (ECG) 信号中的 R 波峰来实现与心脏运动的图像采集同步(称为)。由于与强磁场相关的磁流体动力学效应会导致 ECG 信号严重失真,因此在 3T 和 7T 扫描仪上进行有效的门控是具有挑战性的。这项工作提出了一种高效的回顾性门控策略,该策略不需要在扫描仪之外进行预先训练,并研究了 ECG 采集集中最佳导联数量。所提出的方法是在 3T 和 7T 扫描仪采集的 12 导联 ECG 信号数据集上开发的。独立成分分析用于有效地将与心脏活动相关的组件与与噪声相关的组件分离。随后,自动选择过程根据心率估计指标和频率内容质量指数,识别最适合准确 R 波检测的组件。所提出的方法对不同的 B0 场强具有鲁棒性,这一点可以从 3T 和 7T 扫描仪采集的数据的 R 波检测误差分别为 2.4 ± 3.1ms 和 10.6 ± 15.4ms 得到证明。通过各种受试者体位验证了其有效性,展示了在各种临床情况下的适用性。研究表明,在不显著降低 R 波检测精度的情况下,ECG 导联的数量可以限制为三个,对于 7T 场强最多可以限制为五个。该方法不需要进行初步的 ECG 采集即可进行 R 波检测器训练,从而减少了整体检查时间。门控过程旨在具有适应性、完全盲目且与患者特征无关,从而可以在临床实践中广泛快速地部署。能够使用明显受限的导联集可以提高患者舒适度。