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A fast volumetric 4D-MRI with sub-second frame rate for abdominal motion monitoring and characterization in MRI-guided radiotherapy

机译:快速体积4D-MRI,具有腹部运动监测和MRI引导放射治疗中的腹部运动监测和表征的快速体积4d-MRI

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Background: To propose a fast volumetric 4D-MRI based on 3D pulse sequence acquisition for abdominal motion monitoring and characterization in MRI-guided radiotherapy (MRgRT). Methods: A 3D spoiled gradient echo sequence volumetric interpolated breath-hold examination (VIBE) [repetition time/echo time (TR/TE) =0.53/1.57 ms, flip-angle =5°, receiver bandwidth (RBW) =1,400 Hz/voxel] based 4D-MRI acquisition, accelerated by 4-fold controlled aliasing in parallel imaging results in higher acceleration (CAIPIRINHA), named CAIPIRINHA-VIBE 4D-MRI, was implemented on a 1.5T MRI simulator (MR-sim) and applied for abdominal imaging of nine healthy volunteers under free breathing. One hundred and forty-four dynamics of the entire abdomen volume (56 slices), in total 8,064 (144×56) images with a voxel size of 2.7×2.7×4.0 mm 3 , were acquired in 89 s for 4D-MRI. This CAIPIRINHAVIBE 4D-MRI was qualitatively compared with a 2D half-Fourier acquisition single-shot turbo spinecho (2D-HASTE) based 4D-MRI. The motions of liver dome, kidney and spleen were analyzed using the CAIPIRINHA-VIBE 4D-MRI data. The kidney motion was quantitatively characterized in terms of motion range and the correlations between left and right kidneys. Results: CAIPIRINHA-VIBE 4D-MRI was successfully conducted in all subjects. CAIPIRINHA-VIBE 4D-MRI exhibited much higher effective volumetric temporal resolution (0.615 vs . ~5 s/volume) and better reconstructed volume consistency than 2D-HASTE 4D-MRI. CAIPIRINHA-VIBE 4D-MRI was able to characterize the respiratory motion of abdominal organs simultaneously in three orthogonal directions, and could potentially be used for whole abdomen deformable motion tracking. Renal motion range was most pronounced in superior-inferior (SI) direction (L: 10.03±2.65 mm; R: 10.38±2.80 mm), significantly larger (P vs . 2.32±1.34 mm, P=0.045) than left kidney in AP, but not in LR and SI directions. The Pearson correlation coefficients r between left and right kidney motion were 0.5063 (P=0.164), 0.6624 (P=0.052) and 0.5752 (P=0.105) in LR, AP and SI correspondingly. The correlation of renal motion in SI and AP was found significant in right kidney (r=0.843, P=0.004) but not in left kidney (r=0.467, P=0.205). Conclusions: A fast volumetric 4D-MRI was implemented for abdominal motion monitoring in MRgRT. A sub-second volumetric temporal resolution of 0.615 s, covering the entire abdomen, was demonstrated for respiratory motion monitoring and characterization. This technique holds potentials for MRgRT applications.
机译:背景:提出基于3D脉冲序列采集的快速体积4D-MRI进行MRI引导放射治疗(MRGRT)的腹部运动监测和表征。方法:3D损坏梯度回波序列体积内插呼吸检查(VIBE)[重复时间/回声时间(TR / TE)= 0.53 / 1.57ms,翻转角= 5°,接收带宽(RBW)= 1,400Hz /基于Voxel]的4D-MRI采集,在一个名为CAIPIRINHA-VIBE 4D-MRI的较高加速度(CAIPIRINHA)中,在1.5T的MRI模拟器(MR-SIM)上实现了较高的加速(CAIPIRINHA),并应用于自由呼吸下九个健康志愿者的腹部影像。在89S对于4D-MRI的情况下,在8,064(144×56)的整个腹部体积(56个切片)的一百四十四个动态(56个切片)的动态,总素尺寸为2.7×2.7×4.0mm 3。该CAIPIRINHAVIBE 4D-MRI与基于2D的半傅里叶采集单次Turbo Specho(2D-HASTE)的4D-MRI进行了定性。使用CAIPIRINHA-VIBE 4D-MRI数据分析肝脏圆顶,肾和脾的运动。在运动范围内定量表征肾运动以及左肾和右肾脏之间的相关性。结果:CAIPIRINHA-VIBE 4D-MRI在所有科目中成功进行。 CAIPIRINHA-VIBE 4D-MRI展现了更高的有效体积时间分辨率(0.615 Vs。〜5 s /体积),并且比2d-haste 4d-mri更好地重建体积一致性。 CAIPIRINHA-VIBE 4D-MRI能够在三个正交方向上同时表征腹部器官的呼吸运动,并且可能用于全腹部可变形运动跟踪。肾运动范围最明显(Si)方向(L:10.03±2.65 mm; R:10.38±2.80 mm),显着较大(P vs。2.32±1.34 mm,P = 0.045)比AP中的左肾但不是在LR和SI方向上。左肾运动之间的Pearson相关系数r在LR,AP和Si中为0.5063(p = 0.164),0.6624(p = 0.052)和0.5752(p = 0.105)。在右肾(r = 0.843,p = 0.004)中发现肾运动和AP中的肾运动的相关性,但不在左肾(r = 0.467,p = 0.205)中。结论:在MRGRT中实施了快速体积的4D-MRI用于腹部运动监测。覆盖整个腹部的副第二容量时间分辨率为0.615秒,用于呼吸运动监测和表征。该技术具有MRGRT应用的电位。

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