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实时运动追踪在螺旋断层放疗中的应用及初步临床经验: jaws 和多叶准直器的应用

Clinical Implementation and Initial Experience of Real-Time Motion Tracking With Jaws and Multileaf Collimator During Helical Tomotherapy Delivery.

机构信息

Department of Radiation Oncology, Medical College of Wisconsin, Milwaukee, Wisconsin.

Department of Radiation Oncology, Medical College of Wisconsin, Milwaukee, Wisconsin.

出版信息

Pract Radiat Oncol. 2021 Sep-Oct;11(5):e486-e495. doi: 10.1016/j.prro.2021.01.010. Epub 2021 Feb 10.

Abstract

PURPOSE

This work reports the clinical implementation of a real-time motion tracking and correction system using dynamic multileaf collimator and jaws during helical tomotherapy delivery (Synchrony on Radixact; Accuray, Inc).

METHODS AND MATERIALS

The first clinical Synchrony on Radixact system was recently installed and tested at our institution. Various clinical workflows, including fiducial implantation, computed tomography simulation, treatment planning, delivery quality assurance, treatment simulation, and delivery, for both fiducial-free and fiducial-based motion tracking methods were developed. Treatment planning and delivery data from initial patients, including dosimetric benefits, real-time target detection, model building, motion tracking accuracy, delivery smoothness, and extra dose from real-time radiographic imaging, were analyzed.

RESULTS

The Synchrony on Radixact system was tested to be within its performance specifications and has been used to treat 10 lung (fiducial-free) and 5 prostate (fiducial-based) patients with cancer so far in our clinic. The success of these treatments, especially for fiducial-free tracking, depends on multiple factors, including careful selection of the patient, appropriate setting of system parameters, appropriate positioning of the patient and skin markers, and use of treatment simulation. For the lung tumor cases, difficulties in model building, due primarily to the changes of target detectability or respiration patterns, were observed, which led to important system upgrades, including the addition of a treatment delivery simulation capability. Motion tracking metrics for all treated patients were within specifications, for example, (1) delivery quality assurance passing rates >95%; (2) extra dose from radiograph <0.5% of the prescription dose; and (3) average Potential Diff, measured Δ, and Rigid Body were within 6.5, 2.9, and 3.9 mm, respectively.

CONCLUSIONS

Practical workflows for the use of the first clinical motion tracking and correction system in helical tomotherapy delivery have been developed, and the system has now been successfully implemented in our clinic for treating patients with lung and prostate cancer.

摘要

目的

本研究报告了一种使用动态多叶准直器和机架在螺旋断层放疗中进行实时运动跟踪和校正的系统的临床实施情况,该系统名为 Synchrony on Radixact(Accuray,Inc)。

方法与材料

我们机构最近安装并测试了第一台临床用 Synchrony on Radixact 系统。我们开发了各种临床工作流程,包括无标记植入、计算机断层扫描模拟、治疗计划、验证质量保证、治疗模拟和治疗,适用于无标记和基于标记的运动跟踪方法。对最初的患者的治疗计划和治疗数据进行了分析,包括剂量学益处、实时目标检测、模型建立、运动跟踪精度、治疗平滑度以及实时放射成像的额外剂量。

结果

Synchrony on Radixact 系统的性能符合规格要求,迄今为止,该系统已在我们的诊所用于治疗 10 例肺癌(无标记)和 5 例前列腺癌(基于标记)患者。这些治疗的成功,特别是对于无标记跟踪,取决于多个因素,包括仔细选择患者、适当设置系统参数、适当定位患者和皮肤标记物,以及使用治疗模拟。对于肺部肿瘤病例,由于目标可探测性或呼吸模式的变化,建模存在困难,这导致了重要的系统升级,包括增加治疗输送模拟功能。所有接受治疗的患者的运动跟踪指标均符合规格,例如:(1)验证通过率>95%;(2)来自射线照片的额外剂量<处方剂量的 0.5%;(3)平均潜在差异(Potential Diff)、测量的Δ值和刚体分别在 6.5、2.9 和 3.9mm 以内。

结论

我们开发了用于螺旋断层放疗中使用第一台临床运动跟踪和校正系统的实用工作流程,该系统现在已成功应用于我们的诊所,用于治疗肺癌和前列腺癌患者。

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