University-BHF Centre for Cardiovascular Science, Edinburgh University, Edinburgh, United Kingdom of Great Britain and Northern Ireland.
Medical Physics, NHS Lothian, Edinburgh, United Kingdom of Great Britain and Northern Ireland.
Ultraschall Med. 2022 Aug;43(4):393-402. doi: 10.1055/a-1194-3818. Epub 2020 Jun 26.
The grayscale imaging performance of a total of 368 different scanner/transducer combinations from 39 scanner manufacturers measured over a period of 15 years is presented. Performance was measured using the resolution integral, a single figure-of-merit to quantify ultrasound imaging performance. The resolution integral was measured using the Edinburgh Pipe Phantom. Transducers included single element, linear, phased, curvilinear and multi-row arrays. Our results demonstrate that the resolution integral clearly differentiates between transducers with varying levels of performance. Two further parameters were also derived from the resolution integral: characteristic resolution and depth of field. We demonstrate that these two parameters can successfully characterize individual transducer performance and differentiate between transducers designed for different clinical and preclinical applications. In conclusion, the resolution integral is an effective metric to quantify and monitor grayscale imaging performance in clinical practice.
本文呈现了总计 368 种不同的扫描仪/换能器组合的灰度成像性能,这些组合来自 39 家扫描仪制造商,测量时间跨度为 15 年。使用分辨率积分来测量性能,这是一个单一的综合指标,用于量化超声成像性能。分辨率积分使用爱丁堡管型体模进行测量。换能器包括单元素、线性、相控、曲线和多排阵列。我们的结果表明,分辨率积分可以清楚地区分具有不同性能水平的换能器。还从分辨率积分中推导出另外两个参数:特征分辨率和景深。我们证明这两个参数可以成功地描述单个换能器的性能,并区分用于不同临床和临床前应用的换能器。总之,分辨率积分是一种有效的指标,可以量化和监测临床实践中的灰度成像性能。