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MR-CBCT 图像引导系统在大鼠前列腺肿瘤放射治疗中的应用。

MR-CBCT image-guided system for radiotherapy of orthotopic rat prostate tumors.

机构信息

Department of Radiation Oncology, University of Texas Southwestern Medical Center, Dallas, Texas, United States of America.

Department of Radiology, University of Texas Southwestern Medical Center, Dallas, Texas, United States of America.

出版信息

PLoS One. 2018 May 30;13(5):e0198065. doi: 10.1371/journal.pone.0198065. eCollection 2018.

Abstract

Multi-modality image-guided radiotherapy is the standard of care in contemporary cancer management; however, it is not common in preclinical settings due to both hardware and software limitations. Soft tissue lesions, such as orthotopic prostate tumors, are difficult to identify using cone beam computed tomography (CBCT) imaging alone. In this study, we characterized a research magnetic resonance (MR) scanner for preclinical studies and created a protocol for combined MR-CBCT image-guided small animal radiotherapy. Two in-house dual-modality, MR and CBCT compatible, phantoms were designed and manufactured using 3D printing technology. The phantoms were used for quality assurance tests and to facilitate end-to-end testing for combined preclinical MR and CBCT based treatment planning. MR and CBCT images of the phantoms were acquired utilizing a Varian 4.7 T scanner and XRad-225Cx irradiator, respectively. The geometry distortion was assessed by comparing MR images to phantom blueprints and CBCT. The corrected MR scans were co-registered with CBCT and subsequently used for treatment planning. The fidelity of 3D printed phantoms compared to the blueprint design yielded favorable agreement as verified with the CBCT measurements. The geometric distortion, which varied between -5% and 11% throughout the scanning volume, was substantially reduced to within 0.4% after correction. The distortion free MR images were co-registered with the corresponding CBCT images and imported into a commercial treatment planning software SmART Plan. The planning target volume (PTV) was on average 19% smaller when contoured on the corrected MR-CBCT images relative to raw images without distortion correction. An MR-CBCT based preclinical workflow was successfully designed and implemented for small animal radiotherapy. Combined MR-CBCT image-guided radiotherapy for preclinical research potentially delivers enhanced relevance to human radiotherapy for various disease sites. This novel protocol is wide-ranging and not limited to the orthotopic prostate tumor study presented in the study.

摘要

多模态图像引导放射治疗是当代癌症管理的标准治疗方法;然而,由于硬件和软件的限制,它在临床前环境中并不常见。仅使用锥形束计算机断层扫描 (CBCT) 成像,很难识别软组织病变,如原位前列腺肿瘤。在这项研究中,我们对一种用于临床前研究的研究磁共振 (MR) 扫描仪进行了特征描述,并创建了一种用于 MR-CBCT 图像引导小动物放射治疗的协议。设计并使用 3D 打印技术制造了两个内部双模态、MR 和 CBCT 兼容的体模。使用这些体模进行质量保证测试,并促进基于临床前 MR 和 CBCT 的联合治疗计划的端到端测试。使用 Varian 4.7 T 扫描仪和 XRad-225Cx 辐照器分别获取体模的 MR 和 CBCT 图像。通过将 MR 图像与体模蓝图和 CBCT 进行比较来评估几何失真。对校正后的 MR 扫描进行配准,并随后用于治疗计划。3D 打印体模与蓝图设计的一致性良好,与 CBCT 测量结果一致。几何失真在整个扫描体积内变化在-5%到 11%之间,经过校正后大大降低到 0.4%以内。无失真的 MR 图像与相应的 CBCT 图像配准,并导入商业治疗计划软件 SmART Plan。与未经失真校正的原始图像相比,在校正后的 MR-CBCT 图像上勾画的计划靶区 (PTV) 平均小 19%。成功设计并实施了基于 MR-CBCT 的临床前小动物放射治疗工作流程。用于临床前研究的基于 MR-CBCT 的图像引导放射治疗可能为各种疾病部位的人类放射治疗提供更高的相关性。该新方案范围广泛,不仅限于本研究中提出的原位前列腺肿瘤研究。

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