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The Evolving Role of Molecular Imaging in Non-Small Cell Lung Cancer Radiotherapy

机译:分子成像在非小细胞肺癌放疗中的作用不断演变

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Molecular imaging with positron emission tomography (PET) has dramatically changed the management of patients with lung cancer who are treated with radiotherapy. Uptake of the most widely used PET radiopharmaceutical F-18-fluorodeoxyglucose identifies lung nodules or intrathoracic lymph nodes as likely to be malignant and frequently identifies previously unsuspected sites of malignant disease outside the thorax. Patients with non small cell lung cancer, especially those with apparently more advanced locoregional disease to start with, are often upstaged, and this has a profound effect on their subsequent management. Better patient selection, primarily by excluding patients with PET-detected advanced disease, and better targeting of radiotherapy to avoid geographic miss have contributed significantly to improvements in outcome in recent series of patients treated with definitive chemoradiation. Advances in motion management with 4-dimensional PET/computed tomography and research into sequential imaging during treatment to permit response-adapted therapy hold promise for further improvements in treatment outcomes. Research involving novel PET tracers that can characterize biological properties of tumors, such as proliferation or hypoxia, may help develop more personalized approaches to patient management in the future. (C) 2015 Elsevier Inc. All rights reserved.
机译:用正电子发射断层扫描(PET)进行的分子成像极大地改变了接受放射治疗的肺癌患者的治疗方式。摄取最广泛使用的PET放射性药物F-18-氟代脱氧葡萄糖可以确定肺结节或胸腔内淋巴结可能是恶性的,并经常识别出胸腔外以前未被怀疑的恶性疾病部位。非小细胞肺癌患者,尤其是那些明显患有晚期局部区域疾病的患者,通常会升级,对他们的后续治疗产生深远影响。更好的患者选择,主要是通过排除患有PET检测到的晚期疾病的患者,以及更好地靶向放疗以避免地理错位,极大地改善了最近接受定性化学放射治疗的一系列患者的预后。 4维PET /计算机断层扫描在运动管理方面的进展以及在治疗过程中进行顺序成像研究以实现适应性治疗的前景有望进一步改善治疗结果。涉及新颖PET示踪剂的研究可以表征肿瘤的生物学特性,例如增殖或缺氧,这可能有助于将来开发更加个性化的患者管理方法。 (C)2015 Elsevier Inc.保留所有权利。

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