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影像引导放射治疗中增强光学跟踪技术与成像的整合

Integration of Enhanced Optical Tracking Techniques and Imaging in IGRT.

作者信息

Baroni Guido, Riboldi Marco, Spadea Maria Francesca, Tagaste Barbara, Garibaldi Cristina, Orecchia Roberto, Pedotti Antonio

机构信息

TBMLab-Department of Bioengineering, Politecnico di Milano University.

出版信息

J Radiat Res. 2007;48 Suppl A:A61-74. doi: 10.1269/jrr.48.a61.

Abstract

In external beam radiotherapy, modern technologies for dynamic dose delivery and beam conformation provide high selectivity in radiation dose administration to the pathological volume. A comparable accuracy level is needed in the 3-D localization of tumor and organs at risk (OARs), in order to accomplish the planned dose distribution in the reality of each irradiation session. In-room imaging techniques for patient setup verification and tumor targeting may benefit of the combined daily use of optical tracking technologies, supported by techniques for the detection and compensation of organ motion events. Multiple solutions to enhance the use of optical tracking for the on-line correction of target localization uncertainties are described, with specific emphasis on the compensation of setup errors, breathing movements and non-rigid deformations. The final goal is the implementation of customized protocols where appropriate external landmarks, to be tracked in real-time by means of non-invasive optical devices, are selected as a function of inner target localization. The presented methodology features high accuracy in patient setup optimization, also providing a valuable tool for on-line patient surveillance, taking into account both breathing and deformation effects. The methodic application of optical tracking is put forward to represent a reliable and low cost procedure for the reduction of safety margins, once the patient-specific correlation between external landmarks and inner structures has been established. Therefore, the integration of optical tracking with in-room imaging devices is proposed as a way to gain higher confidence in the framework of Image Guided Radiation Therapy (IGRT) treatments.

摘要

在体外放射治疗中,动态剂量输送和射束适形的现代技术在向病理体积给予辐射剂量时提供了高选择性。为了在每次照射疗程中实际完成计划的剂量分布,在肿瘤和危及器官(OARs)的三维定位中需要相当的准确度水平。用于患者摆位验证和肿瘤靶向的室内成像技术可能受益于光学跟踪技术的联合日常使用,并辅以器官运动事件的检测和补偿技术。描述了多种增强光学跟踪用于在线校正靶标定位不确定性的方法,特别强调了对摆位误差、呼吸运动和非刚性变形的补偿。最终目标是实施定制方案,根据内部靶标定位选择合适的外部标记,通过非侵入性光学设备进行实时跟踪。所提出的方法在患者摆位优化方面具有高精度,同时考虑到呼吸和变形影响,还为在线患者监测提供了有价值的工具。一旦建立了外部标记与内部结构之间的患者特异性相关性,光学跟踪的系统应用被提出作为一种降低安全裕度的可靠且低成本的程序。因此,建议将光学跟踪与室内成像设备集成,作为在图像引导放射治疗(IGRT)治疗框架中获得更高可信度的一种方式。

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