School of Physics, National University of Ireland Galway, Galway, Ireland; School of Mathematics, Statistics and Applied Mathematics, National University of Ireland Galway, Galway, Ireland.
School of Physics, National University of Ireland Galway, Galway, Ireland.
Phys Med. 2019 Oct;66:113-118. doi: 10.1016/j.ejmp.2019.09.242. Epub 2019 Oct 5.
Accurate estimation of SAR is critical to safeguarding vulnerable patients who require an MRI procedure. The increased static field strength and RF duty cycle capabilities in modern MRI scanners mean that systems can easily exceed safe SAR levels for patients. Advisory protocols routinely used to establish quality assurance protocols are not required to advise on the testing of MRI SAR levels and is not routinely measured in annual medical physics quality assurance checks. This study aims to develop a head phantom and protocol that can independently verify global SAR for MRI clinical scanners.
A four-channel birdcage head coil was used for RF transmission and signal reception. Proton resonance shift thermometry was used to estimate SAR. The SAR estimates were verified by comparing results against two other independent measures, then applied to a further four scanners at field strengths of 1.5 T and 3 T.
Scanner output SAR values ranged from 0.42 to 1.52 W/kg. Percentage SAR differences between independently estimated values and those calculated by the scanners differed by 0-2.3%.
We have developed a quality assurance protocol to independently verify the SAR output of MRI scanners.
准确估计 SAR 对于需要 MRI 检查的脆弱患者至关重要。现代 MRI 扫描仪中增加的静态磁场强度和射频工作周期能力意味着系统很容易超过患者的安全 SAR 水平。通常用于建立质量保证协议的咨询协议无需对 MRI SAR 水平的测试提出建议,并且在年度医疗物理质量保证检查中也不会常规测量。本研究旨在开发一种头模和协议,可独立验证 MRI 临床扫描仪的全局 SAR。
使用四通道鸟笼头线圈进行射频传输和信号接收。质子共振位移测温法用于估计 SAR。通过将结果与另外两种独立测量方法进行比较来验证 SAR 估计值,然后将其应用于另外四个场强为 1.5T 和 3T 的扫描仪。
扫描仪输出的 SAR 值范围为 0.42 至 1.52W/kg。独立估计值与扫描仪计算值之间的 SAR 差异百分比在 0 到 2.3%之间。
我们已经开发了一种质量保证协议,可以独立验证 MRI 扫描仪的 SAR 输出。