IEEE Trans Ultrason Ferroelectr Freq Control. 2017 Jan;64(1):192-205. doi: 10.1109/TUFFC.2016.2619622. Epub 2016 Nov 2.
Ultrasound (US) has become increasingly important in imaging and image-guided interventional procedures. In order to ensure that the imaging equipment performs to the highest level achievable and thus provides reliable clinical results, a number of quality control (QC) methods have been developed. Such QC is increasingly required by accrediting agencies and professional organizations; however, these requirements typically do not include detailed procedures for how the tests should be performed. In this paper, a detailed overview of QC methods for general and breast US imaging using computer-based objective methods is described. The application of QC is then discussed within the context of a common clinical application (US-guided needle biopsy) as well as for research applications, where QC may not be mandated, and thus is rarely discussed. The implementation of these methods will help in finding early stage equipment faults and in optimizing image quality, which could lead to better detection and classification of suspicious findings in clinical applications, as well as improving the robustness of research studies.
超声(US)在成像和影像引导介入性操作中变得越来越重要。为了确保成像设备达到尽可能高的性能水平,从而提供可靠的临床结果,已经开发了许多质量控制(QC)方法。认证机构和专业组织越来越需要这种 QC;然而,这些要求通常不包括如何进行测试的详细程序。本文详细介绍了使用基于计算机的客观方法进行一般和乳腺超声成像的 QC 方法。然后,在常见的临床应用(超声引导下的针吸活检)以及研究应用的背景下讨论 QC 的应用,在研究应用中,QC 可能不是强制性的,因此很少讨论。这些方法的实施将有助于发现早期的设备故障,并优化图像质量,这可能导致在临床应用中更好地检测和分类可疑发现,并提高研究工作的稳健性。