University of Oxford Centre for Clinical Magnetic Resonance Research, Division of Cardiovascular Medicine, Radcliffe Department of Medicine, Oxford, United Kingdom.
Magn Reson Med. 2018 Apr;79(4):2164-2169. doi: 10.1002/mrm.26866. Epub 2017 Aug 3.
To evaluate the use of radiofrequency scattering of a parallel transmit coil to track diaphragm motion.
Measurements made during radiofrequency excitation on an 8-channel parallel transmit coil by the directional couplers of the radiofrequency safety monitor were combined and converted into diaphragm position. A 30-s subject-specific calibration with an MRI navigator was used to determine a diaphragm estimate from each directional-coupler measure. Seven healthy volunteers were scanned at 7 T, in which images of the diaphragm were continuously acquired and directional couplers were monitored during excitation radiofrequency pulses. The ability to detect coughing was evaluated in one subject. The method was implemented on the scanner and evaluated for diaphragm gating of a free-breathing cardiac cine.
Six of the seven scans were successful. In these subjects, the root mean square difference between MRI and scattering estimation of the superior-inferior diaphragm position was 1.4 ± 0.5 mm. On the scanner, the position was calculated less than 2 ms after every radiofrequency pulse. A prospectively gated (echocardiogram and respiration) high-resolution free-breathing cine showed no respiratory artifact and sharp blood-myocardium definition.
Transmit coil scattering is sensitive to diaphragm motion and provides rapid, quantitative, and accurate monitoring of respiration. Magn Reson Med 79:2164-2169, 2018. © 2017 The Authors Magnetic Resonance in Medicine published by Wiley Periodicals, Inc. on behalf of International Society for Magnetic Resonance in Medicine. This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
评估平行发射线圈的射频散射在跟踪横膈膜运动中的应用。
通过射频安全监测器的定向耦合器对 8 通道平行发射线圈在射频激发期间进行测量,并将其组合并转换为横膈膜位置。使用具有 MRI 导航器的 30 秒特定于个体的校准来从每个定向耦合器测量确定横膈膜估计值。在 7T 下对 7 名健康志愿者进行扫描,在此期间连续采集横膈膜图像,并在激发射频脉冲期间监测定向耦合器。在一名志愿者中评估了检测咳嗽的能力。该方法在扫描仪上实现,并对自由呼吸心脏电影的横膈膜门控进行了评估。
在这 7 次扫描中,有 6 次成功。在这些受试者中,MRI 和散射估计的上下横膈膜位置的均方根差为 1.4±0.5mm。在扫描仪上,在每个射频脉冲之后不到 2ms 就计算出了位置。前瞻性门控(超声心动图和呼吸)高分辨率自由呼吸电影显示没有呼吸伪影和锐利的血液心肌定义。
发射线圈散射对横膈膜运动敏感,并提供呼吸的快速、定量和准确监测。磁共振医学 79:2164-2169,2018。© 2017 作者。磁共振医学由 Wiley 期刊出版公司代表国际磁共振医学学会出版。这是在知识共享署名许可条款下的许可,允许在任何媒介中使用、分发和复制原作,只要原作者被正确引用。