图像引导:治疗目标定位系统。

Michael B Sharpe, Tim Craig, Douglas J Moseley
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引用次数: 12

摘要

高度适形放射治疗根据目标形状和位置定制治疗方案,将正常组织损伤降到比以前更大的程度。技术进步,如十年前引入的调强放射治疗,在肿瘤控制和降低毒性方面取得了重大进展。持续的进展集中在患者运动、器官运动和解剖变形的表征和控制上,这些都引入了几何不确定性。这些不确定性的来源限制了高精度治疗的有效性。目标定位,使用适当的技术和频率,是治疗质量保证的关键组成部分。直到最近,相对于光束的目标位置是从患者皮肤表面标记或通过固定装置推断出来的,并使用治疗门静脉的巨压x线片进行验证。成像技术的进步使得在治疗环境中对软组织体积成像成为可能。使用各种技术,包括透视成像和植入肿瘤内或肿瘤附近的不透射线标记物,也可以实现实时跟踪。在治疗设置中获得体积软组织图像的能力也可用于评估治疗过程中的解剖变化。加强定位实践可以减少治疗错误,并提供监测解剖变化的能力,减少可能影响临床结果的不确定性。这篇综述介绍了可用于靶标定位的技术,并讨论了在实施许多新的放射肿瘤学临床过程中应该考虑的一些问题。
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Image guidance: treatment target localization systems.

Highly conformal radiation therapy tailors treatment to match the target shape and position, minimizing normal tissue damage to a greater extent than previously possible. Technological advances such as intensity-modulated radiation therapy, introduced a decade ago, have yielded significant gains in tumor control and reduced toxicity. Continuing advances have focused on the characterization and control of patient movement, organ motion, and anatomical deformation, which all introduce geometric uncertainty. These sources of uncertainty limit the effectiveness of high-precision treatment. Target localization, performed using appropriate technologies and frequency, is a critical component of treatment quality assurance. Until recently, the target position with respect to the beams has been inferred from surface marks on the patient's skin or through an immobilization device, and verified using megavoltage radiographs of the treatment portal. Advances in imaging technologies have made it possible to image soft tissue volumes in the treatment setting. Real-time tracking is also possible using a variety of technologies, including fluoroscopic imaging and radiopaque markers implanted in or near the tumor. The capacity to acquire volumetric soft tissue images in the treatment setting can also be used to assess anatomical changes over a course of treatment. Enhancing localization practices reduces treatment errors, and gives the capacity to monitor anatomical changes and reduce uncertainties that could influence clinical outcomes. This review presents the technologies available for target localization, and discusses some of the considerations that should be addressed in the implementation of many new clinical processes in radiation oncology.

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