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首页> 外文期刊>Medical Physics >Effect of radiation induced current on the quality of MR images in an integrated linac-MR system
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Effect of radiation induced current on the quality of MR images in an integrated linac-MR system

机译:集成直线加速器-MR系统中的辐射感应电流对MR图像质量的影响

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Purpose: In integrated linac-MRI systems, the RF coils are exposed to the linacs pulsed radiation, leading to a measurable radiation induced current (RIC). This work (1) visualizes the RIC in MRI raw data and determines its effect on the MR image signal-to-noise ratio (SNR) (b) examines the effect of linac dose rate on SNR degradations, (c) examines the RIC effect on different MRI sequences, (d) examines the effect of altering the MRI sequence timing on the RIC, and (e) uses a postprocessing method to reduce the RIC signal from the MR raw data. Methods: MR images were acquired on the linac-MR prototype system using various imaging sequences (gradient echo, spin echo, and bSSFP), dose rates (0, 50, 100, 150, 200, and 250 MUmin) and repetition times (TR) with the gradient echo sequence. The images were acquired with the radiation beam either directly incident or blocked from the RF coils. The SNR was calculated for each of these scenarios, showing a loss in SNR due to RIC. Finally, a postprocessing method was applied to the image k-space data in order to remove partially the RIC signal and recover some of the lost SNR. Results: The RIC produces visible spikes in the k-space data acquired with the linacs radiation incident on the RF coils. This RIC leads to a loss in imaging SNR that increases with increasing linac dose rate (15-18 loss at 250 MUmin). The SNR loss seen with increasing linac dose rate appears to be largely independent of the MR sequence used. Changing the imaging TR had interesting visual effects on the appearance of RIC in k-space due to the timing between the linacs pulsing and the MR sequence, but did not change the SNR loss for a given linac dose rate. The use of a postprocessing algorithm was able to remove much of the RIC noise spikes from the MR image k-space data, resulting in the recovery of a significant portion, up to 81 (Table II), of the lost image SNR. Conclusions: The presence of RIC in MR RF coils leads to a loss of SNR which is directly related to the linac dose rate. The RIC related loss in SNR is likely to increase for systems that are able to provide larger than 250 MUmin dose. Some of this SNR loss can be recovered through the use of a postprocessing algorithm, which removes the RIC artefact from the image k-space.
机译:目的:在集成直线加速器MRI系统中,RF线圈暴露于直线加速器脉冲辐射下,从而产生可测量的辐射感应电流(RIC)。这项工作(1)可视化MRI原始数据中的RIC并确定其对MR图像信噪比(SNR)的影响(b)检查直线加速器剂量率对SNR劣化的影响,(c)检查RIC效果在不同的MRI序列上,(d)检查了更改RIC序列时序对RIC的影响,并且(e)使用后处理方法从MR原始数据中减少RIC信号。方法:使用各种成像序列(梯度回波,自旋回波和bSSFP),剂量率(0、50、100、150、200和250 MUmin)和重复时间(TR)在linac-MR原型系统上采集MR图像。 )与梯度回波序列。使用直接入射或被RF线圈阻挡的辐射束获取图像。针对每种情况计算SNR,显示由于RIC而导致的SNR损失。最后,将后处理方法应用于图像k空间数据,以部分去除RIC信号并恢复部分丢失的SNR。结果:RIC在直线加速器辐射入射到RF线圈上获得的k空间数据中产生可见的尖峰。此RIC导致成像SNR的损失随直线加速器剂量率的增加而增加(在250 MUmin时损失15-18)。随着直线加速器剂量率的增加而出现的SNR损失似乎在很大程度上与所使用的MR序列无关。由于直线加速器脉冲和MR序列之间的时间关系,更改成像TR对RIC在k空间中的出现具有有趣的视觉效果,但对于给定的直线加速器剂量率,并没有改变SNR损失。使用后处理算法能够从MR图像k空间数据中消除许多RIC噪声尖峰,从而导致丢失图像SNR的大部分恢复到81(表II)。结论:MR RF线圈中RIC的存在会导致SNR的损失,这与直线加速器剂量率直接相关。对于能够提供大于250 MUmin剂量的系统,与RIC有关的RIC损失可能会增加。某些SNR损失可以通过使用后处理算法来弥补,该算法可以从图像k空间中消除RIC伪像。

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