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立体定向放射外科和立体定向消融放疗的 ExacTrac 动态调试框架

A Framework for ExacTrac Dynamic Commissioning for Stereotactic Radiosurgery and Stereotactic Ablative Radiotherapy.

作者信息

Perrett Ben, Ukath Jaysree, Horgan Emma, Noble Chris, Ramachandran Prabhakar

机构信息

Department of Radiation Oncology, Princess Alexandra Hospital, Woolloongabba, Queensland, Australia.

出版信息

J Med Phys. 2022 Oct-Dec;47(4):398-408. doi: 10.4103/jmp.jmp_67_22. Epub 2023 Jan 10.

Abstract

This paper aims to provide guidance and a framework for commissioning tests and tolerances for the ExacTrac Dynamic image-guided and surface-guided radiotherapy (SGRT) system. ExacTrac Dynamic includes a stereoscopic X-ray system, a structured light projector, stereoscopic cameras, thermal camera for SGRT, and has the capability to track breath holds and internal markers. The system provides fast and accurate image guidance and intrafraction guidance for stereotactic radiosurgery and stereotactic ablative radiotherapy. ExacTrac Dynamic was commissioned on a recently installed Elekta Versa HD. Commissioning tests are described including safety, isocenter calibration, dosimetry, image quality, data transfer, SGRT stability, SGRT localization, gating, fusion, implanted markers, breath hold, and end-to-end testing. Custom phantom designs have been implemented for assessment of the deep inspiration breath-hold workflow, the implanted markers workflow, and for gating tests where remote-controlled movement of a phantom is required. Commissioning tests were all found to be in tolerance, with maximum translational and rotational deviations in SGRT of 0.3 mm and 0.4°, respectively, and X-ray image fusion reproducibility standard deviation of 0.08 mm. Tolerances were based on published documents and upon the performance characteristics of the system as specified by the vendor. The unique configuration of ExacTrac Dynamic requires the end user to design commissioning tests that validate the system for use in the clinical implementation adopted in the department. As there are multiple customizable workflows available, tests should be designed around these workflows, and can be ongoing as workflows are progressively introduced into departmental procedures.

摘要

本文旨在为精确放疗动态图像引导和表面引导放疗(SGRT)系统的调试测试及公差提供指导和框架。精确放疗动态系统包括一个立体X射线系统、一个结构光投影仪、立体摄像机、用于SGRT的热成像摄像机,并且有能力追踪屏气和体内标记物。该系统为立体定向放射外科手术和立体定向消融放疗提供快速且精确的图像引导和分次内引导。精确放疗动态系统是在最近安装的医科达Versa HD上进行调试的。文中描述了调试测试,包括安全性、等中心校准、剂量测定、图像质量、数据传输、SGRT稳定性、SGRT定位、门控、融合、植入标记物、屏气以及端到端测试。已实施定制体模设计,用于评估深吸气屏气工作流程、植入标记物工作流程以及需要体模遥控移动的门控测试。所有调试测试均在公差范围内,SGRT的最大平移和旋转偏差分别为0.3毫米和0.4°,X射线图像融合再现性标准偏差为0.08毫米。公差基于已发表的文件以及供应商规定的系统性能特征。精确放疗动态系统的独特配置要求最终用户设计调试测试,以验证该系统在科室采用的临床应用中的适用性。由于有多种可定制的工作流程,测试应围绕这些工作流程进行设计,并且随着工作流程逐步引入科室程序,可以持续进行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33a3/9997535/9c1f98e13be3/JMP-47-398-g001.jpg

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