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MRI‐based polymer gel dosimetry for validating plans with multiple matrices in Gamma Knife stereotactic radiosurgery

机译:基于MRI的聚合物凝胶剂量学用于验证伽玛刀立体定向放射外科手术中具有多个矩阵的计划

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摘要

One of treatment planning techniques with Leksell GammaPlan (LGP) for Gamma Knife stereotactic radiosurgery (GKSRS) uses multiple matrices with multiple dose prescriptions. Computational complexity increases when shots are placed in multiple matrices with different grid sizes. Hence, the experimental validation of LGP calculated dose distributions is needed for those cases. For the current study, we used BANG3 polymer gel contained in a head‐sized glass bottle to simulate the entire treatment process of GKSRS. A treatment plan with three 18 mm shots and one 8 mm shot in separate matrices was created with LGP. The prescribed maximum dose was 8 Gy to three shots and 16 Gy to one of the 18 mm shots. The 3D dose distribution recorded in the gel dosimeter was read using a Siemens 3T MRI scanner. The scanning parameters of a CPMG pulse sequence with 32 equidistant echoes were as follows: TR = 7s, echo step  =  13.6 ms,  field‐of‐view  =  256 mm ×  256 mm, and pixel size = 1 mm × 1 mm. Interleaved acquisition mode was used to obtain 15 to 45 2‐mm‐thick slices. Using a calibration relationship between absorbed dose and the spin‐spin relaxation rate (R2), we converted R2 images to dose images. MATLAB‐based in‐house programs were used for R2 estimation and dose comparison. Gamma‐index analysis for the 3D data showed gamma values less than unity for 86% of the voxels. Through this study we accomplished the first application of polymer gel dosimetry for a true comparison between measured 3D dose distributions and LGP calculations for plans using multiple matrices for multiple targets.PACS number: 87.53.Ly, 87.55‐x, 87.56 ‐g
机译:Leksell GammaPlan(LGP)用于伽玛刀立体定向放射外科手术(GKSRS)的治疗计划技术之一使用具有多个剂量处方的多种基质。当将镜头放置在具有不同网格大小的多个矩阵中时,计算复杂性会增加。因此,对于那些情况,需要LGP计算的剂量分布的实验验证。在当前的研究中,我们使用装在头部大小的玻璃瓶中的BANG3聚合物凝胶来模拟GKSRS的整个处理过程。 LGP制定了在单独的矩阵中具有三个18毫米镜头和一个8毫米镜头的治疗计划。规定的最大剂量为8 Gy到3枪,16 Gy到18 mm枪之一。使用Siemens 3T MRI扫描仪读取凝胶剂量计中记录的3D剂量分布。具有32个等距回波的CPMG脉冲序列的扫描参数如下:TR = 7s,回波步长= 13.6μms,视场= 256 mm×256 mm,像素大小= 1 mm×1 mm。交错采集模式用于获得15到45个2毫米厚的切片。利用吸收剂量和自旋-自旋弛豫率(R2)之间的校准关系,我们将R2图像转换为剂量图像。基于MATLAB的内部程序用于R2估计和剂量比较。 3D数据的伽玛指数分析显示,对于86%的体素,伽玛值小于1。通过这项研究,我们完成了聚合物凝胶剂量测定法的首次应用,以真正比较3D剂量分布和使用多个目标的多个矩阵计划的LGP计算之间的PACS数:87.53.Ly,87.55-x,87.56-g

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