Andreychenko A, Raaijmakers A J E, Sbrizzi A, Crijns S P M, Lagendijk J J W, Luijten P R, van den Berg C A T
Imaging Division, University Medical Center Utrecht, Netherlands.
Magn Reson Med. 2017 Jan;77(1):221-228. doi: 10.1002/mrm.26108. Epub 2016 Jan 13.
Development of a passive respiratory motion sensor based on the noise variance of the receive coil array.
Respiratory motion alters the body resistance. The noise variance of an RF coil depends on the body resistance and, thus, is also modulated by respiration. For the noise variance monitoring, the noise samples were acquired without and with MR signal excitation on clinical 1.5/3 T MR scanners. The performance of the noise sensor was compared with the respiratory bellow and with the diaphragm displacement visible on MR images. Several breathing patterns were tested.
The noise variance demonstrated a periodic, temporal modulation that was synchronized with the respiratory bellow signal. The modulation depth of the noise variance resulting from the respiration varied between the channels of the array and depended on the channel's location with respect to the body. The noise sensor combined with MR acquisition was able to detect the respiratory motion for every k-space read-out line.
Within clinical MR systems, the respiratory motion can be detected by the noise in receive array. The noise sensor does not require careful positioning unlike the bellow, any additional hardware, and/or MR acquisition. Magn Reson Med 77:221-228, 2017. © 2016 Wiley Periodicals, Inc.
基于接收线圈阵列的噪声方差开发一种被动式呼吸运动传感器。
呼吸运动会改变人体电阻。射频线圈的噪声方差取决于人体电阻,因此也会受到呼吸的调制。为了监测噪声方差,在临床1.5/3T磁共振成像扫描仪上,分别在无磁共振信号激发和有磁共振信号激发的情况下采集噪声样本。将噪声传感器的性能与呼吸波纹管以及磁共振图像上可见的膈肌位移进行比较。测试了几种呼吸模式。
噪声方差呈现出与呼吸波纹管信号同步的周期性时间调制。呼吸引起的噪声方差调制深度在阵列各通道之间有所不同,并取决于通道相对于身体的位置。结合磁共振采集的噪声传感器能够检测每条k空间读出线的呼吸运动。
在临床磁共振系统中,可通过接收阵列中的噪声检测呼吸运动。与波纹管不同,噪声传感器不需要精确放置,也不需要任何额外硬件和/或磁共振采集。《磁共振医学》77:221 - 228, 2017。© 2016威利期刊公司。