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MR-guidance in clinical reality: current treatment challenges and future perspectives

机译:MR指导在临床现实中:当前的治疗挑战和未来展望

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摘要

Magnetic Resonance-guided radiotherapy (MRgRT) marks the beginning of a new era. MR is a versatile and suitable imaging modality for radiotherapy, as it enables direct visualization of the tumor and the surrounding organs at risk. Moreover, MRgRT provides real-time imaging to characterize and eventually track anatomical motion. Nevertheless, the successful translation of new technologies into clinical practice remains challenging. To date, the initial availability of next-generation hybrid MR-linac (MRL) systems is still limited and therefore, the focus of the present preview was on the initial applicability in current clinical practice and on future perspectives of this new technology for different treatment sites.MRgRT can be considered a groundbreaking new technology that is capable of creating new perspectives towards an individualized, patient-oriented planning and treatment approach, especially due to the ability to use daily online adaptation strategies. Furthermore, MRL systems overcome the limitations of conventional image-guided radiotherapy, especially in soft tissue, where target and organs at risk need accurate definition. Nevertheless, some concerns remain regarding the additional time needed to re-optimize dose distributions online, the reliability of the gating and tracking procedures and the interpretation of functional MR imaging markers and their potential changes during the course of treatment. Due to its continuous technological improvement and rapid clinical large-scale application in several anatomical settings, further studies may confirm the potential disruptive role of MRgRT in the evolving oncological environment.
机译:磁共振引导放射疗法(MRgRT)标志着新时代的开始。 MR是一种适用于放射治疗的通用且适合的成像方式,因为它可以直接可视化肿瘤和处于危险中的周围器官。此外,MRgRT提供实时成像以表征并最终跟踪解剖运动。尽管如此,将新技术成功转化为临床实践仍然具有挑战性。迄今为止,下一代混合MR-直线加速器(MRL)系统的初始可用性仍然有限,因此,本预览的重点是当前临床实践中的初始适用性以及该新技术用于不同治疗的未来前景MRgRT可以被认为是一项具有开创性的新技术,它能够为个性化,以患者为导向的计划和治疗方法创造新的观点,尤其是由于能够使用每日在线适应策略。此外,MRL系统克服了传统的影像引导放射疗法的局限性,尤其是在软组织中,在这些组织中,有风险的靶标和器官需要准确定义。然而,仍然存在一些关于在线重新优化剂量分布所需的额外时间,门控和跟踪程序的可靠性以及功能性MR成像标志物的解释及其在治疗过程中的潜在变化的担忧。由于其不断的技术进步和快速的临床大规模应用在多种解剖学环境中,进一步的研究可能证实MRgRT在不断发展的肿瘤环境中的潜在破坏作用。

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