Hybrid Somatostatin Receptor PET/MRI of the Head and Neck.

IF 5.2 1区 医学 Q1 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Radiographics Pub Date : 2024-10-01 DOI:10.1148/rg.240020
Graham Keir, David Petrover, Christopher Caravella, Anuj Goenka, Josephine N Rini, Ana M Franceschi
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Abstract

Hybrid PET/MRI has the potential to transform neuro-oncologic imaging, particularly in diagnosis and treatment planning of somatostatin receptor-expressing tumors of the head and neck. Hybrid PET/MRI combines high-resolution MRI with functional information from PET, providing precise anatomic information and overcoming difficulties in localization inherent to PET alone. There is a range of tumors in the head and neck that overexpress somatostatin receptors and are therefore amenable to evaluation with somatostatin receptor PET/MRI. These include meningiomas, paragangliomas, olfactory neuroblastomas, pituitary neuroendocrine tumors, middle ear neuroendocrine tumors, and medullary thyroid carcinomas. The combination of PET and MRI is superior to either modality alone and can address several unique diagnostic challenges associated with these lesions. The authors discuss the superior capabilities of somatostatin receptor PET/MRI, including improved lesion localization, more sensitive demonstration of disease extent, enhanced surveillance, optimized radiation therapy planning, and accurate prediction of response to somatostatin analog therapy. Although there are only a few dedicated PET/MRI units available in clinical practice, commercial software is now available that can automatically fuse PET/CT data with recently acquired MRI data, increasing the availability of this approach. Radiologists should be aware of the advantages of somatostatin receptor PET/MRI in evaluation of head and neck tumors as well as the potential pitfalls of this approach so that they can accurately advise clinicians and better interpret these studies. ©RSNA, 2024 See the invited commentary by Shatzkes and Strauss in this issue.

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头颈部混合型生长抑素受体 PET/MRI
混合 PET/MRI 有可能改变神经肿瘤成像,特别是在头颈部表达体生长抑素受体肿瘤的诊断和治疗计划方面。混合 PET/MRI 将高分辨率核磁共振成像与 PET 的功能信息相结合,提供精确的解剖信息,克服了单纯 PET 在定位方面固有的困难。头颈部有一系列肿瘤过度表达体生长抑素受体,因此适合用体生长抑素受体 PET/MRI 进行评估。这些肿瘤包括脑膜瘤、副神经节瘤、嗅神经母细胞瘤、垂体神经内分泌肿瘤、中耳神经内分泌肿瘤和甲状腺髓样癌。正电子发射计算机断层显像(PET)和核磁共振成像(MRI)的组合优于单独使用其中一种模式,并能解决与这些病变相关的一些独特的诊断难题。作者讨论了体生长激素受体 PET/MRI 的卓越功能,包括改善病灶定位、更灵敏地显示疾病范围、加强监测、优化放疗计划以及准确预测对体生长激素类似物疗法的反应。虽然目前只有少数专用 PET/MRI 设备可用于临床实践,但现在已有商业软件可将 PET/CT 数据与最近获得的 MRI 数据自动融合,从而提高了这种方法的可用性。放射医师应了解体生长抑素受体 PET/MRI 在评估头颈部肿瘤方面的优势以及这种方法的潜在缺陷,以便准确地为临床医师提供建议,更好地解释这些研究。©RSNA,2024 见本期 Shatzkes 和 Strauss 的特邀评论。
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来源期刊
Radiographics
Radiographics 医学-核医学
CiteScore
8.20
自引率
5.50%
发文量
224
审稿时长
4-8 weeks
期刊介绍: Launched by the Radiological Society of North America (RSNA) in 1981, RadioGraphics is one of the premier education journals in diagnostic radiology. Each bimonthly issue features 15–20 practice-focused articles spanning the full spectrum of radiologic subspecialties and addressing topics such as diagnostic imaging techniques, imaging features of a disease or group of diseases, radiologic-pathologic correlation, practice policy and quality initiatives, imaging physics, informatics, and lifelong learning. A special issue, a monograph focused on a single subspecialty or on a crossover topic of interest to multiple subspecialties, is published each October. Each issue offers more than a dozen opportunities to earn continuing medical education credits that qualify for AMA PRA Category 1 CreditTM and all online activities can be applied toward the ABR MOC Self-Assessment Requirement.
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