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Technical Note: Radiotherapy dose characterization of gel dosimetry using shear wave elasticity imaging

机译:技术说明:使用剪切波弹性成像凝胶剂量测量的放射疗法剂量

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Purpose Radiotherapy is an effective treatment for many types of cancer in clinical settings. Gel dosimetry has the potential to record three‐dimensional (3D) dose distribution compared to a conventional ion chamber. As the elasticity of the gel is altered after irradiation due to gel polymerization, we aim to measure the dose recorded in gel dosimetry with ultrasonic shear wave elasticity imaging (SWEI), a nondestructive and quantitative elasticity imaging tool. Methods In this study, a cylindrical N‐isopropylacrylamide (NIPAM) polymer gel with a diameter of 10?cm and a height of 10?cm and with cellulose as an ultrasonic scatterer was irradiated by a linear accelerator with the irradiation parameters of 6?MV x‐ray, dose rate of 100?cGy/min and field size of 10? × ?20?mm 2 . The six gel phantoms were irradiated with the dose of 0, 1, 3, 5, 8, or 10?Gy. The gel phantoms were measured with SWEI at 24, 36, and 48?h after x‐ray irradiation. The two‐dimensional (2D) shear wave velocity and Young’s modulus maps corresponding to x‐ray dose distribution were reconstructed following a time‐of‐flight reconstruction from a set of time‐series displacement maps. The spatial resolution of the reconstructed SWEI image is ~1?mm. Results Our results show that the elastic modulus increases linearly as irradiation dose increases (R 2 ?=?0.94 at 24?h, R 2 ?=?0.98 at 36?h, R 2 ?=?0.98 at 48?h), suggesting that the gel elasticity is highly associated with x‐ray irradiation dose at 36?h post irradiation, and the dose resolution was 0.66?kPa/Gy. From the 3D elastic modulus maps, the dose distribution along the depth and lateral direction can be reflected in the NIPAM gel dosimetry using SWEI as well. Conclusions In this study, the irradiated NIPAM gel phantom was quantitatively measured with SWEI for the first time to read the dose distribution recorded in the gel dosimetry. The results suggest that the gel elasticity is highly associated with x‐ray irradiation dose. In the future, 2D/or 3D dose distribution from intensity modulated radiotherapy (IMRT) or other potential particle radiotherapy will be measured and reconstructed with SWEI and compared with the dose map from a treatment planning system (TPS) in the clinic.
机译:目的放射疗法是临床环境中许多类型癌症的有效治疗方法。与传统的离子室相比,凝胶剂量测定有可能记录三维(3D)剂量分布。由于凝胶由于凝胶聚合引起的照射后凝胶的弹性而改变,我们的目的是测量用超声剪切波弹性成像(SWEI),非破坏性和定量弹性成像工具记录在凝胶剂量法中记录的剂量。本研究中的方法,用线性加速器用6μmV的照射参数照射直径为10Ωcm的圆柱形N-异丙基丙烯酰胺(NIPAM)聚合物凝胶,其高度为10Ωcm和纤维素,为超声波散射体。 X射线,剂量率为100?CGY / min和田径10? ×20?mm 2。用0,1,3,5,8或10μlγ的剂量照射六种凝胶晶粒。在X射线照射后,用SWEI在SWEI下用SWEI测量凝胶晶粒。在从一组时间序列位移图中重建之后,重建对应于X射线剂量分布的二维(2D)剪切波速度和杨氏模量图。重建的SWEI图像的空间分辨率为〜1?mm。结果我们的研究结果表明,由于照射剂量增加(R 2?= 0.94,在24Ω= 0.94时,弹性模量随线增加(R 2?= 0.94,R 2为36Ω·H,R 2?0.98在48?= 0.98),提示凝胶弹性与辐射后36μlH的X射线照射剂量高度相关,剂量分辨率为0.66μl≤kPa/ gy。从3D弹性模量图,沿着深度和横向方向的剂量分布也可以使用SWEI在NIPAM凝胶剂量测定中反射。结论在本研究中,首次用Swei定量测量辐照的NIPAM凝胶幻体,以读取在凝胶剂量测定中记录的剂量分布。结果表明,凝胶弹性与X射线照射剂量高度相关。将来,从强度调制的放射疗法(IMRT)或其他潜在颗粒放射治疗的2D /或3D剂量分布,并用Swei重建,并与临床治疗系统(TPS)的剂​​量图进行比较。

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