Baker Kenneth B, Tkach Jean A, Phillips Micheal D, Rezai Ali R
Center for Neurological Restoration, Cleveland Clinic Foundation, Cleveland, Ohio 44195, USA.
J Magn Reson Imaging. 2006 Dec;24(6):1236-42. doi: 10.1002/jmri.20769.
To compare the MRI-related heating per unit of specific absorption rate (SAR) profile of a conductive implant between two 1.5-Tesla/64 MHz MR systems using a transmit/receive (t/r) head coil configuration.
Deep brain stimulation (DBS) leads were configured within a gel-filled phantom of the human head and torso. Temperature variation at each of four contacts of the bilaterally-placed leads was monitored using fluoroptic thermometry. MRI was performed using the t/r head coils of two different-generation 1.5-Tesla MR systems from the same manufacturer. Temperature changes were normalized to SAR values for the head (DeltaT/SAR-H), and the slope of this DeltaT/SAR-H by time relationship was compared between the two scanners.
The DeltaT/SAR-H for the implant ranged from 3.5 to 5.5 times higher on one MR system as compared to the other (P < 0.01) depending on the measurement site.
The findings support previous observations that console-reported SAR does not constitute a reliable index of heating for elongated, conductive implants, such as the DBS hardware system tested. In contrast to our previous findings using a t/r body coil, the data presented here reveal marked differences between two MR systems using t/r head coils (the coil configuration was consistent with the implant manufacturer's imaging guidelines). J. Magn. Reson. Imaging 2006. (c) 2006 Wiley-Liss, Inc.
使用发射/接收(t/r)头部线圈配置,比较两个1.5特斯拉/64兆赫兹磁共振成像(MR)系统中导电植入物每单位比吸收率(SAR)分布的与MR相关的加热情况。
将深部脑刺激(DBS)导线配置在人头和躯干的凝胶填充模型内。使用荧光光学温度计监测双侧放置导线的四个触点处的温度变化。使用同一制造商的两代不同的1.5特斯拉MR系统的t/r头部线圈进行MRI检查。将温度变化归一化为头部的SAR值(ΔT/SAR-H),并比较两台扫描仪之间这种ΔT/SAR-H与时间关系的斜率。
根据测量部位,一个MR系统上植入物的ΔT/SAR-H比另一个系统高3.5至5.5倍(P<0.01)。
这些发现支持了先前的观察结果,即控制台报告的SAR对于细长的导电植入物(如测试的DBS硬件系统)而言,并非可靠的加热指标。与我们先前使用t/r体线圈的发现不同,此处呈现的数据揭示了使用t/r头部线圈的两个MR系统之间存在显著差异(线圈配置符合植入物制造商的成像指南)。《磁共振成像杂志》2006年。(c)2006威利 - 利斯公司。