Centre for Functional and Metabolic Mapping, The University of Western Ontario, London, Ontario, Canada.
Department of Medical Biophysics, The University of Western Ontario, London, Ontario, Canada.
Magn Reson Med. 2022 May;87(5):2551-2565. doi: 10.1002/mrm.29130. Epub 2021 Dec 21.
To develop an RF coil with an integrated commercial field camera for ultrahigh field (7T) neuroimaging. The RF coil would operate within a head-only gradient coil and be subject to the corresponding design constraints. The RF coil can thereafter be used for subject-specific correction of k-space trajectories-notably in gradient-sensitive sequences such as single-shot spiral imaging.
The transmit and receive performance was evaluated before and after the integration of field probes, whereas field probes were evaluated when in an optimal configuration external to the coil and after their integration. Diffusion-weighted EPI and single-shot spiral acquisitions were employed to evaluate the efficacy of correcting higher order field perturbations and the consequent effect on image quality.
Field probes had a negligible effect on RF-coil performance, including the transmit efficiency, transmit uniformity, and mean SNR over the brain. Modest reductions in field-probe signal lifetimes were observed, caused primarily by nonidealities in the gradient and shim fields of the head-only gradient coil at the probe positions. The field-monitoring system could correct up to second-order field perturbations in single-shot spiral imaging.
The integrated RF coil and field camera was capable of concurrent-field monitoring within a 7T head-only scanner and facilitated the subsequent correction of k-space trajectories during spiral imaging.
开发一种集成了商业场相机的射频线圈,用于超高场(7T)神经成像。该射频线圈将在仅头部梯度线圈内运行,并受相应的设计约束。此后,该射频线圈可用于对 K 空间轨迹进行特定于受试者的校正,尤其是在梯度敏感序列中,如单次螺旋成像。
在集成场探头前后评估了发射和接收性能,而在外部对线圈进行最佳配置并进行集成后评估了场探头。扩散加权 EPI 和单次螺旋采集用于评估校正高阶场扰动的效果以及对图像质量的影响。
场探头对射频线圈性能几乎没有影响,包括发射效率、发射均匀性和大脑的平均 SNR。观察到场探头信号寿命略有缩短,主要是由于头部仅梯度线圈在探头位置的梯度和匀场的不理想所致。该场监测系统能够校正单次螺旋成像中的二阶场扰动。
集成的射频线圈和场相机能够在 7T 头部仅扫描仪中进行同时场监测,并在螺旋成像期间方便地校正 K 空间轨迹。