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Magnetic resonance linear accelerator technology and adaptive radiation therapy: An overview for clinicians

医学物理学 适应(眼睛) 放射治疗 过程(计算) 癌症治疗 放射肿瘤学 磁共振成像 医学 计算机科学 专业 癌症 心理学 放射科 神经科学 病理 操作系统 内科学
作者
William A. Hall,E.S. Paulson,X. Allen Li,Bradley A. Erickson,Christopher J. Schultz,Alison Tree,Musaddiq Awan,Daniel A. Low,Brigid A. McDonald,Travis C. Salzillo,Carri Glide‐Hurst,Amar U. Kishan,Clifton D. Fuller
出处
期刊:CA: A Cancer Journal for Clinicians [Wiley]
卷期号:72 (1): 34-56 被引量:102
标识
DOI:10.3322/caac.21707
摘要

Radiation therapy (RT) continues to play an important role in the treatment of cancer. Adaptive RT (ART) is a novel method through which RT treatments are evolving. With the ART approach, computed tomography or magnetic resonance (MR) images are obtained as part of the treatment delivery process. This enables the adaptation of the irradiated volume to account for changes in organ and/or tumor position, movement, size, or shape that may occur over the course of treatment. The advantages and challenges of ART maybe somewhat abstract to oncologists and clinicians outside of the specialty of radiation oncology. ART is positioned to affect many different types of cancer. There is a wide spectrum of hypothesized benefits, from small toxicity improvements to meaningful gains in overall survival. The use and application of this novel technology should be understood by the oncologic community at large, such that it can be appropriately contextualized within the landscape of cancer therapies. Likewise, the need to test these advances is pressing. MR-guided ART (MRgART) is an emerging, extended modality of ART that expands upon and further advances the capabilities of ART. MRgART presents unique opportunities to iteratively improve adaptive image guidance. However, although the MRgART adaptive process advances ART to previously unattained levels, it can be more expensive, time-consuming, and complex. In this review, the authors present an overview for clinicians describing the process of ART and specifically MRgART.
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