Technologies of image guidance and the development of advanced linear accelerator systems for radiotherapy.

Frontiers of Radiation Therapy and Oncology Pub Date : 2011-01-01 Epub Date: 2011-05-20 DOI:10.1159/000322414
Vincent W C Wu, Maria Y Y Law, Josh Star-Lack, Fion W K Cheung, C Clifton Ling
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引用次数: 11

Abstract

As advanced radiotherapy approaches for targeting the tumor and sparing the normal tissues have been developed, the image guidance of therapy has become essential to directing and confirming treatment accuracy. To approach these goals, image guidance devices now include kV on-board imagers, kV/MV cone-beam CT systems, CT-on-rails, and mobile and in-room radiographic/fluoroscopic systems. Nonionizing sources, such as ultrasound and optical systems, and electromagnetic devices have been introduced to monitor or track the patient and/or tumor positions during treatment. In addition, devices have been designed specifically for monitoring and/or controlling respiratory motion. Optimally, image-guided radiation therapy systems should possess 3 essential elements: (1) 3D imaging of soft tissues and tumors, (2) efficient acquisition and comparison of the 3D images, and (3) an efficacious process for clinically meaningful intervention. Understanding and using these tools effectively is central to current radiotherapy practice. The implementation and integration of these devices continue to carry practical challenges, which emphasize the need for further development of the technologies and their clinical applications.

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影像引导技术及放射治疗先进直线加速器系统的发展。
随着靶向肿瘤和保留正常组织的高级放疗方法的发展,治疗的图像指导已成为指导和确认治疗准确性的必要条件。为了实现这些目标,图像引导设备现在包括千伏机载成像仪、千伏/毫伏锥束CT系统、轨道CT以及移动和室内射线照相/透视系统。非电离源,如超声和光学系统,以及电磁设备已被引入监测或跟踪治疗期间患者和/或肿瘤的位置。此外,还专门设计了用于监测和/或控制呼吸运动的设备。最佳情况下,图像引导放射治疗系统应具备3个基本要素:(1)软组织和肿瘤的三维成像,(2)三维图像的有效获取和比较,(3)有效的临床干预过程。有效地理解和使用这些工具是当前放疗实践的核心。这些设备的实施和集成继续面临实际挑战,这强调了进一步发展技术及其临床应用的必要性。
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Advances in the planning and delivery of radiotherapy: new expectations, new standards of care. The expanding roles of stereotactic body radiation therapy and oligofractionation: toward a new practice of radiotherapy. Stereotactic body radiation therapy: normal tissue and tumor control effects with large dose per fraction. Stereotactic body radiation therapy for thoracic cancers: recommendations for patient selection, setup and therapy. Stereotactic body radiation therapy for gastrointestinal malignancies.
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