Department of Radiology, Careggi University Hospital, 50134 Florence, Italy.
Department of Radiology, Careggi University Hospital, University of Florence, 50134 Florence, Italy.
Tomography. 2024 Nov 11;10(11):1780-1797. doi: 10.3390/tomography10110131.
Head and neck cancer represents the seventh most common neoplasm worldwide, with squamous cell carcinoma being the most represented histologic variant. The rising incidence of the neoplastic pathology of this district, coupled with the drastic changes in its epidemiology over the past decades, have posed significant challenges to physicians worldwide in terms of diagnosis, prognosis, and treatment. In order to meet these challenges, a considerable amount of effort has been spent by the authors of the recent literature to explore new technologies and their possible employment for the better diagnostic and prognostic definition of head and neck squamous cell carcinoma (HNSCC). Among these technologies, a growing interest has been gathering around the possible applications of dual-energy computed tomography (DECT) in head and neck pathology. Dual-energy computed tomography (DECT) utilizes two distinct X-ray energy spectra to obtain two datasets in a single scan, allowing for material differentiation based on unique attenuation profiles. DECT offers key benefits such as enhanced contrast resolution, reduced beam-hardening artifacts, and precise iodine quantification through monochromatic reconstructions. It also creates material decomposition images, like iodine maps, aiding in tumor characterization and therapy assessment. This paper aims to summarize recent findings on the use of DECT in HNSCC, providing a comprehensive overview to aid further research and exploration in the field.
头颈部癌症是全球第七大常见肿瘤,其中鳞状细胞癌是最常见的组织学变异。该区域肿瘤病理的发病率不断上升,加上过去几十年来其流行病学的急剧变化,给全球医生在诊断、预后和治疗方面带来了重大挑战。为了应对这些挑战,最近的文献作者投入了大量精力来探索新技术及其在头颈部鳞状细胞癌(HNSCC)更好的诊断和预后定义方面的可能应用。在这些技术中,双能计算机断层扫描(DECT)在头颈部病理学中的可能应用引起了越来越多的关注。双能计算机断层扫描(DECT)利用两个不同的 X 射线能谱在单次扫描中获得两个数据集,允许根据独特的衰减曲线进行物质区分。DECT 通过单能量重建提供了增强的对比分辨率、降低的射线硬化伪影和精确的碘定量等关键优势。它还创建物质分解图像,如碘图,有助于肿瘤特征和治疗评估。本文旨在总结 DECT 在 HNSCC 中的应用的最新研究结果,提供全面的概述,以帮助该领域的进一步研究和探索。
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