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神经影像学放射肿瘤学基础。

Fundamentals of Radiation Oncology for Neurologic Imaging.

机构信息

From the Departments of Radiation Oncology (J.T.M., P.T.L., R.D.T., L.A.N.) and Radiology (A.W.J., F.F.Y., L.C.M., B.R.S., A.A., K.M.R.), The University of Texas Southwestern Medical Center, 5323 Harry Hines Blvd, Dallas, TX 75390.

出版信息

Radiographics. 2020 May-Jun;40(3):827-858. doi: 10.1148/rg.2020190138. Epub 2020 Mar 27.

Abstract

Although the physical and biologic principles of radiation therapy have remained relatively unchanged, a technologic renaissance has led to continuous and ever-changing growth in the field of radiation oncology. As a result, medical devices, techniques, and indications have changed considerably during the past 20-30 years. For example, advances in CT and MRI have revolutionized the treatment planning process for a variety of central nervous system diseases, including primary and metastatic tumors, vascular malformations, and inflammatory diseases. The resultant improved ability to delineate normal from abnormal tissue has enabled radiation oncologists to achieve more precise targeting and helped to mitigate treatment-related complications. Nevertheless, posttreatment complications still occur and can pose a diagnostic challenge for radiologists. These complications can be divided into acute, early-delayed, and late-delayed complications on the basis of the time that they manifest after radiation therapy and include leukoencephalopathy, vascular complications, and secondary neoplasms. The different irradiation technologies and applications of these technologies in the brain, current concepts used in treatment planning, and essential roles of the radiation oncologist in the setting of brain disease are reviewed. In addition, relevant imaging findings that can be used to delineate the extent of disease before treatment, and the expected posttreatment imaging changes are described. Common and uncommon complications related to radiation therapy and the associated imaging manifestations also are discussed. Familiarity with these entities may aid the radiologist in making the diagnosis and help guide appropriate management. RSNA, 2020.

摘要

虽然放射治疗的物理和生物学原理相对保持不变,但技术的复兴导致放射肿瘤学领域不断发展和变化。因此,在过去 20-30 年中,医疗设备、技术和适应证发生了很大变化。例如,CT 和 MRI 的进步彻底改变了多种中枢神经系统疾病的治疗计划过程,包括原发性和转移性肿瘤、血管畸形和炎症性疾病。这种正常组织和异常组织区分能力的提高使放射肿瘤学家能够实现更精确的靶向,并有助于减轻治疗相关并发症。然而,治疗后仍会出现并发症,并对放射科医生构成诊断挑战。这些并发症可以根据放射治疗后出现的时间分为急性、早期迟发性和晚期迟发性并发症,包括脑白质病、血管并发症和继发肿瘤。本文回顾了不同的放射治疗技术及其在脑部的应用、治疗计划中使用的当前概念,以及放射肿瘤学家在脑部疾病治疗中的重要作用。此外,还描述了用于在治疗前描绘疾病范围的相关影像学发现以及预期的治疗后影像学改变。还讨论了与放射治疗相关的常见和罕见并发症及其相关的影像学表现。熟悉这些病变有助于放射科医生做出诊断,并有助于指导适当的治疗。RSNA,2020.

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