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The Emerging Role of Amino Acid PET in Neuro-Oncology

机译:氨基酸PET在神经肿瘤学中的新兴作用

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Imaging plays a critical role in the management of the highly complex and widely diverse central nervous system (CNS) malignancies in providing an accurate diagnosis, treatment planning, response assessment, prognosis, and surveillance. Contrast-enhanced magnetic resonance imaging (MRI) is the primary modality for CNS disease management due to its high contrast resolution, reasonable spatial resolution, and relatively low cost and risk. However, defining tumor response to radiation treatment and chemotherapy by contrast-enhanced MRI is often difficult due to various factors that can influence contrast agent distribution and perfusion, such as edema, necrosis, vascular alterations, and inflammation, leading to pseudoprogression and pseudoresponse assessments. Amino acid positron emission tomography (PET) is emerging as the method of resolving such equivocal lesion interpretations. Amino acid radiotracers can more specifically differentiate true tumor boundaries from equivocal lesions based on their specific and active uptake by the highly metabolic cellular component of CNS tumors. These therapy-induced metabolic changes detected by amino acid PET facilitate early treatment response assessments. Integrating amino acid PET in the management of CNS malignancies to complement MRI will significantly improve early therapy response assessment, treatment planning, and clinical trial design.
机译:影像学在高度复杂和广泛多样的中枢神经系统(CNS)恶性肿瘤的管理中起着至关重要的作用,可提供准确的诊断,治疗计划,反应评估,预后和监视。对比度增强磁共振成像(MRI)由于其高对比度分辨率,合理的空间分辨率以及相对较低的成本和风险而成为中枢神经系统疾病治疗的主要方式。但是,由于各种因素可能影响造影剂的分布和灌注,例如水肿,坏死,血管改变和炎症,导致假性进展和假性反应评估,因此很难通过对比增强的MRI来定义肿瘤对放射治疗和化学疗法的反应。氨基酸正电子发射断层扫描(PET)作为解决这种模棱两可的病变解释的方法正在兴起。氨基酸放射性示踪剂可以根据中枢神经系统肿瘤的高代谢细胞成分的特异性和主动摄取,更明确地区分真实的肿瘤边界和模棱两可的病变。通过氨基酸PET检测到的这些治疗诱导的代谢变化有助于早期治疗反应评估。将氨基酸PET整合到CNS恶性肿瘤的管理中以补充MRI,将显着改善早期治疗反应评估,治疗计划和临床试验设计。

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