Service de physique médicale et Axe Oncologie du Centre de recherche, CHU de Québec-Université Laval, Canada.
Département de physique, de génie physique et d'optique, et Centre de recherche sur le cancer, Université Laval, Québec, Canada.
Phys Med Biol. 2021 Aug 27;66(17). doi: 10.1088/1361-6560/ac1ca2.
Anatomical motion and deformation pose challenges to the understanding of the delivered dose distribution during radiotherapy treatments. Hence, deformable image registration (DIR) algorithms are increasingly used to map contours and dose distributions from one image set to another. However, the lack of validation tools slows their clinical adoption, despite their commercial availability. This work presents a novel water-equivalent deformable dosimeter that simultaneously measures the dose distribution and tracks deformation vector fields (DVF). The dosimeter in made of an array of 19 scintillating fiber detectors embedded in a cylindrical elastomer matrix. It is imaged by two pairs of stereoscopic cameras tracking the position and angulation of the scintillators, while measuring the dose. The resulting system provides a precision of 0.3 mm on DVF measurements. The dosimeter was irradiated with 5 × 3, 4 × 3 and 3 × 3 cm6 MV photon beams in both fixed and deformed conditions. The measured DVF was compared to the one computed with a DIR algorithm (Plastimatch). The deviations between the computed and measured DVFs was below 1.5 mm. As for dose measurements, the dosimeter acquired the dose distribution in fixed and deformed conditions within 1% of the treatment planning system calculation and complementary dose validation using the Hyperscint dosimetry system. Using the demonstrated qualities of scintillating detectors, we developed a real-time, water-equivalent deformable dosimeter. Given it's sensor tracking position precision and dose measurements accuracy, the developed detector is a promising tools for the validation of DIR algorithms as well as dose distribution measurements under fixed and deformed conditions.
解剖运动和变形给放射治疗过程中所给予的剂量分布的理解带来了挑战。因此,越来越多的使用可变形图像配准(DIR)算法将轮廓和剂量分布从一个图像集映射到另一个图像集。然而,尽管它们已经商业化,但缺乏验证工具减缓了它们的临床应用。本工作提出了一种新颖的水等效可变形剂量计,它可以同时测量剂量分布和跟踪变形矢量场(DVF)。剂量计由嵌入在圆柱形弹性体矩阵中的 19 个闪烁纤维探测器组成的阵列制成。它由两对立体摄像机成像,用于跟踪闪烁体的位置和角度,同时测量剂量。该系统提供了 0.3 毫米的 DVF 测量精度。该剂量计在固定和变形条件下用 5×3、4×3 和 3×3 cm6 MV 光子束进行了照射。将测量的 DVF 与使用 DIR 算法(Plastimatch)计算的 DVF 进行比较。计算的和测量的 DVF 之间的偏差小于 1.5 毫米。至于剂量测量,剂量计在固定和变形条件下采集剂量分布,与治疗计划系统计算的偏差在 1%以内,并使用 Hyperscint 剂量测量系统进行补充剂量验证。利用所展示的闪烁探测器的特性,我们开发了一种实时的、水等效的可变形剂量计。鉴于其传感器跟踪位置精度和剂量测量精度,所开发的探测器是验证 DIR 算法以及在固定和变形条件下测量剂量分布的有前途的工具。