Greatbatch Wilson, Miller Victor, Shellock Frank G
Greatbatch Enterprises, Inc., Clarence, New York, USA.
J Magn Reson Imaging. 2002 Jul;16(1):97-103. doi: 10.1002/jmri.10129.
To assess magnetic resonance (MR) safety for a newly developed, fiber-optic cardiac pacing lead.
MR safety was assessed for the fiber-optic cardiac pacing lead by evaluating magnetic field interactions and heating. Translational attraction and torque were evaluated using a 1.5-Tesla MR system and previously described, standardized techniques. MR imaging-related heating was assessed using a 1.5-Tesla MR system and a transmit/receive, body radiofrequency (RF) coil with the fiber-optic lead positioned to simulate an in vivo condition in a saline-filled phantom. The phantom had dimensions similar to a human subject's torso and head. A fluoroptic thermometry system was used to record temperatures on and near the electrodes of the fiber-optic pacing lead at five-second intervals immediately before and during 20 minutes of MR imaging performed at a whole-body-averaged specific absorption rate (SAR) of 1.5 W/kg. Temperatures were also recorded from a reference site during this experiment.
Magnetic field interactions for the fiber-optic lead were minimal (deflection angle, 23 degrees; torque, +2). The highest temperature change recorded for the fiber-optic cardiac pacing lead and reference site was +0.8 degrees C.
The minor magnetic field interactions and relative lack of heating for the fiber-optic pacing lead indicate that it should be safe for patients with this device to undergo MR imaging procedures using MR systems operating at 1.5-T or less and at a whole-body-averaged SARs up to 1.5 W/kg.
评估一种新开发的光纤心脏起搏导线的磁共振(MR)安全性。
通过评估磁场相互作用和发热情况来评估光纤心脏起搏导线的MR安全性。使用1.5特斯拉MR系统和先前描述的标准化技术评估平移吸引力和扭矩。使用1.5特斯拉MR系统以及发射/接收体部射频(RF)线圈评估与MR成像相关的发热情况,将光纤导线放置在充满盐水的体模中以模拟体内情况。该体模的尺寸与人体受试者的躯干和头部相似。在以1.5 W/kg的全身平均比吸收率(SAR)进行20分钟MR成像之前及成像过程中,每隔5秒使用荧光光学测温系统记录光纤起搏导线电极上及其附近的温度。在此实验过程中,还从一个参考部位记录温度。
光纤导线的磁场相互作用极小(偏转角为23度;扭矩为 +2)。光纤心脏起搏导线和参考部位记录到的最高温度变化为 +0.8℃。
光纤起搏导线的轻微磁场相互作用以及相对较少的发热表明,对于植入该装置的患者,使用1.5 T及以下、全身平均SAR高达1.5 W/kg的MR系统进行MR成像检查应该是安全的。