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使用单等中心立体定向放射治疗多发性脑转移瘤的带有摆位误差的肿瘤体积计算的多分量数学模型。

Multicomponent mathematical model for tumor volume calculation with setup error using single-isocenter stereotactic radiotherapy for multiple brain metastases.

机构信息

Department of Radiation Oncology, Niigata University Medical and Dental Hospital, 1-757 Asahimachi-Dori, Chuo-Ku, Niigata-Shi, Niigata, Japan.

Department of Medical Physics and Engineering, Osaka University Graduate School of Medicine, 1-7 Yamadaoka, Suita-Shi, Osaka, Japan.

出版信息

Phys Eng Sci Med. 2023 Jun;46(2):945-953. doi: 10.1007/s13246-023-01241-8. Epub 2023 Mar 20.

Abstract

We evaluated the tumor residual volumes considering six degrees-of-freedom (6DoF) patient setup errors in stereotactic radiotherapy (SRT) with multicomponent mathematical model using single-isocenter irradiation for brain metastases. Simulated spherical gross tumor volumes (GTVs) with 1.0 (GTV 1), 2.0 (GTV 2), and 3.0 (GTV 3)-cm diameters were used. The distance between the GTV center and isocenter (d) was set at 0-10 cm. The GTV was simultaneously translated within 0-1.0 mm (T) and rotated within 0°-1.0° (R) in the three axis directions using affine transformation. We optimized the tumor growth model parameters using measurements of non-small cell lung cancer cell lines' (A549 and NCI-H460) growth. We calculated the GTV residual volume at the irradiation's end using the physical dose to the GTV when the GTV size, d, and 6DoF setup error varied. The d-values that satisfy tolerance values (10%, 35%, and 50%) of the GTV residual volume rate based on the pre-irradiation GTV volume were determined. The larger the tolerance value set for both cell lines, the longer the distance to satisfy the tolerance value. In GTV residual volume evaluations based on the multicomponent mathematical model on SRT with single-isocenter irradiation, the smaller the GTV size and the larger the distance and 6DoF setup error, the shorter the distance that satisfies the tolerance value might need to be.

摘要

我们评估了肿瘤残留体积,考虑了使用多分量数学模型在立体定向放射治疗(SRT)中考虑到六个自由度(6DoF)的患者摆位误差,使用单等中心照射治疗脑转移瘤。模拟了具有 1.0cm(GTV1)、2.0cm(GTV2)和 3.0cm(GTV3)直径的球形大体肿瘤体积(GTV)。GTV 中心与等中心之间的距离(d)设置为 0-10cm。GTV 在三个轴方向上同时以 0-1.0mm(T)的距离平移和 0°-1.0°(R)的角度旋转,使用仿射变换。我们使用非小细胞肺癌细胞系(A549 和 NCI-H460)生长的测量结果优化了肿瘤生长模型参数。当 GTV 大小、d 和 6DoF 摆位误差变化时,我们使用 GTV 接受的物理剂量计算照射结束时的 GTV 残留体积。确定满足 GTV 残留体积率基于预照射 GTV 体积的 10%、35%和 50%容差值的 d 值。两种细胞系设置的容差值越大,满足容差值的距离就越长。在使用单等中心照射的 SRT 上的多分量数学模型进行的 GTV 残留体积评估中,GTV 体积越小,距离和 6DoF 摆位误差越大,满足容差值所需的距离就越短。

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