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高频皮肤超声在非黑色素瘤皮肤癌中的应用。

The use of high frequency skin ultrasound in non-melanoma skin cancer.

作者信息

Bezugly Artur, Rembielak Agata

机构信息

Non-invasive Skin Diagnostics Laboratory ANTA-Med, Dermatology Department, Academy of Postgraduate under the Federal State Budgetary Unit "Federal Scientific and Clinical Center for Specialized Medical Assistance and Medical Technologies of the Federal Medical Biological Agency", Moscow, Russia.

The Christie NHS Foundation Trust and The University of Manchester, Manchester, UK.

出版信息

J Contemp Brachytherapy. 2021 Aug;13(4):483-491. doi: 10.5114/jcb.2021.108603. Epub 2021 Aug 24.

Abstract

Ultrasound (US) or sonography is the most common diagnostic non-invasive imaging method, which is estimated to account for more than a third of all diagnostic procedures used in medical practice. Traditionally, US frequencies used in diagnostic radiology range from 1 MHz to approximately 16 MHz. Visualization of skin morphology requires US frequencies from 20 to 100 MHz, and is called a "high frequency ultrasound" (HFUS). HFUS has been explored in normal skin and in various skin pathologies. It has been found useful in differentiation diagnosis of infiltrative (perivascular) and exudative inflammation, hypertrophic or normotrophic scars, keloids, and in skin atrophy. Moreover, it has been used to support diagnosis and management of skin tumors. In skin oncology, HFUS can provide essential information on tumors' size and margins, particularly the depth of invasion. Such information are crucial in deciding on the form of treatment (e.g., photodynamic therapy, radiotherapy, brachytherapy), computed tomography (CT)-based planning treatment (e.g., superficial brachytherapy), and in skin monitoring after treatment, in addition to clinical examination.

摘要

超声(US)或超声检查是最常见的非侵入性诊断成像方法,据估计,它在医学实践中所使用的所有诊断程序中占比超过三分之一。传统上,诊断放射学中使用的超声频率范围为1兆赫兹至约16兆赫兹。皮肤形态的可视化需要20至100兆赫兹的超声频率,这被称为“高频超声”(HFUS)。高频超声已在正常皮肤和各种皮肤病变中得到研究。它已被证明在浸润性(血管周围)和渗出性炎症、肥厚性或正常营养性瘢痕、瘢痕疙瘩以及皮肤萎缩的鉴别诊断中很有用。此外,它还被用于支持皮肤肿瘤的诊断和管理。在皮肤肿瘤学中,高频超声可以提供有关肿瘤大小和边缘的重要信息,特别是浸润深度。除了临床检查外,这些信息对于确定治疗形式(例如光动力疗法、放射疗法、近距离放射疗法)、基于计算机断层扫描(CT)的治疗计划(例如浅表近距离放射疗法)以及治疗后的皮肤监测至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13e2/8407264/ebd5f8f89608/JCB-13-44977-g001.jpg

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