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首页> 外文期刊>Journal of applied clinical medical physics / >Evaluation of cine imaging during multileaf collimator and gantry motion for real‐time magnetic resonance guided radiation therapy
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Evaluation of cine imaging during multileaf collimator and gantry motion for real‐time magnetic resonance guided radiation therapy

机译:用于实时磁共振导引导辐射治疗的多叶准直器和龙门运动过程中的凝固成像评价

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Purpose Real‐time magnetic resonance guided radiation therapy (MRgRT) uses 2D cine imaging for target tracking. This work evaluates the percent image uniformity (PIU) and spatial integrity of cine images in the presence of multileaf collimator (MLC) and gantry motion in order to simulate sliding window and volumetric modulated arc therapy (VMAT) conditions. Methods Percent image uniformity and spatial integrity of cine images were measured (1) during MLC motion, (2) as a function of static gantry position, and (3) during gantry rotation. PIU was calculated according to the ACR MRI Quality Control Manual. Spatial integrity was evaluated by measuring the geometric distortion of 16 measured marker positions (10?cm or 15.225?cm from isocenter). Results The PIU of cine images did not vary by more than 1% from static linac conditions during MLC motion and did not vary by more than 3% during gantry rotation. Banding artifacts were present during gantry rotation. The geometric distortion in the cine images was less than 0.88?mm for all points measured throughout MLC motion. For all static gantry positions, the geometric distortion was less than 0.88?mm at 10?cm from isocenter and less than 1.4?mm at 15.225?cm from isocenter. During gantry rotation, the geometric distortion remained less than 0.92?mm at 10?cm from isocenter and less than 1.60?mm at 15.225?cm from isocenter. Conclusion During MLC motion, cine images maintained adequate PIU, and the geometric distortion of points within 15.225?cm from isocenter was less than the 1?mm threshold necessary for real‐time target tracking and gating. During gantry rotation, PIU was negatively affected by banding artifacts, and spatial integrity was only maintained within 10?cm from isocenter. Future work should investigate the effects imaging artifacts have on real‐time target tracking during MRgRT.
机译:目的实时磁共振导辐射治疗(MRGRT)使用2D电影成像进行目标跟踪。这项工作评估了在存在多叶和架和龙头运动的存在中的图像均匀性(PIU)和凝固图像的空间完整性,以模拟滑动窗和体积调制电弧治疗(VMAT)条件。方法在MLC运动期间测量(1)在MLC运动期间测量(1)的百分比图像均匀性和空间完整性,作为静电龙门位置的函数,并且在龙门旋转期间(3)。 PIU根据ACR MRI质量控制手册计算。通过测量16个测量标记位置的几何变形(来自Isocenter)的几何变形(10℃或15.225厘米)来评估空间完整性。结果在MLC运动期间,Cine图像的PIU从静态LINAC条件不变化超过1%,并且在龙门旋转期间没有变化超过3%。在龙门旋转期间存在带状伪影。对于在整个MLC运动中测量的所有点,在凝块图像中的几何变形小于0.88Ωmm。对于所有静态龙头架位置,几何变形小于来自等中心的10Ω·厘米的0.88Ωmm。来自Isocenter的15.225厘米,小于1.4mm。在龙门旋转期间,几何变形仍然小于来自Isocenter的10Ω·cm的0.92Ω·mm。来自Isocenter的15.225厘米的1.60Ωmm。结论在MLC运动期间,CINE图像保持足够的PIU,并且来自ISocenter的15.225°内的点的几何变形小于实时目标跟踪和门控所需的1Ωmm阈值。在龙门旋转期间,PIU受带伪影产生的负面影响,并且空间完整性仅在来自ISOcenter的10℃内保持在10℃。未来的工作应该调查MRGR在MRGRT期间对实时目标跟踪的效果。

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