Firbank M J, Harrison R M, Williams E D, Coulthard A
University Department of Radiology, Royal Victoria Infirmary, Newcastle upon Tyne, UK.
Br J Radiol. 2000 Apr;73(868):376-83. doi: 10.1259/bjr.73.868.10844863.
The aim of this study is to propose guidelines for quality assurance (QA) in MRI, based on a comprehensive assessment of QA parameters undertaken on a busy clinical MRI scanner over the course of 1 year. QA phantoms supplied by the scanner manufacturer were used together with the Eurospin MRI phantom set. Signal-to-noise ratio (SNR) and image uniformity were measured daily from spin echo images acquired using a quadrature send-receive head coil and from a gradient echo sequence using the Helmholtz body coil. The voltage of the transmit radiofrequency (RF) amplifier was noted. Monthly measurements of slice thickness, geometric distortion, slice position, image resolution and image ghosting were acquired using the head coil. In addition, SNR was measured monthly on a selection of commonly used coils. Apart from some drift of the RF amplifier voltage, all measurements were within acceptable limits and were stable over the course of 1 year. Satisfactory measurements of SNR were possible using the simple phantom supplied with the scanner. The SNR, geometric distortion and RF amplifier voltage are simple to determine and can be measured in less than 15 min by the scanner operator, using the scanner software. Weekly recording of these parameters is recommended for busy clinical MRI scanners, as this should allow deviations from acceptable limits to be identified early. Such in-house checks can usefully be compared with the less frequent estimations performed by the service engineer. Comprehensive QA routines are discussed for systems used for quantitative measurements.
本研究的目的是基于对一台繁忙的临床MRI扫描仪在1年时间里进行的质量保证(QA)参数的全面评估,提出MRI质量保证指南。使用扫描仪制造商提供的QA体模以及Eurospin MRI体模集。每天使用正交收发头部线圈采集的自旋回波图像以及使用亥姆霍兹体线圈的梯度回波序列测量信噪比(SNR)和图像均匀性。记录发射射频(RF)放大器的电压。每月使用头部线圈测量切片厚度、几何畸变、切片位置、图像分辨率和图像重影。此外,每月在一些常用线圈上测量SNR。除了RF放大器电压有一些漂移外,所有测量均在可接受范围内,并且在1年时间里保持稳定。使用扫描仪附带的简单体模就可以获得令人满意的SNR测量结果。SNR、几何畸变和RF放大器电压易于确定,扫描仪操作员可以使用扫描仪软件在不到15分钟的时间内进行测量。对于繁忙的临床MRI扫描仪,建议每周记录这些参数,因为这应该能够早期发现偏离可接受限度的情况。这种内部检查可以有效地与服务工程师进行的不太频繁的评估进行比较。讨论了用于定量测量的系统的综合QA程序。