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7T 下深部脑刺激电极的植入友好型 MRI 检查

Implant-friendly MRI of deep brain stimulation electrodes at 7 T.

机构信息

Center for Magnetic Resonance Research, University of Minnesota, Minneapolis, Minnesota, USA.

出版信息

Magn Reson Med. 2023 Dec;90(6):2627-2642. doi: 10.1002/mrm.29825. Epub 2023 Aug 2.

Abstract

PURPOSE

The purpose of this study is to present a strategy to calculate the implant-friendly (IF) excitation modes-which mitigate the RF heating at the contacts of deep brain stimulation (DBS) electrodes-of multichannel RF coils at 7 T.

METHODS

An induced RF current on an implantable electrode generates a scattered magnetic field whose left-handed circularly polarizing component ( ) is approximated using a -mapping technique and subsequently used as a gauge for the electrode's induced current. Using this approach, the relative induced currents resulting from each channel of a multichannel RF coil on the DBS electrode were calculated. The IF modes of the corresponding multichannel coil were determined by calculating the null space of the relative induced currents. The proposed strategy was tested and validated for unilateral and bilateral commercial DBS electrodes (directional lead; Infinity DBS system, Abbott Laboratories) placed inside a uniform phantom by performing heating and imaging studies on a 7T MRI scanner using a 16-channel transceive RF coil.

RESULTS

Neither individual IF modes nor shim solutions obtained from IF modes induced significant temperature increase when used for a high-power turbo spin-echo sequence. In contrast, shimming with the scanner's toolbox (i.e., based on per-channel fields) resulted in a more than 2°C temperature increase for the same amount of input power.

CONCLUSION

A strategy for calculating the IF modes of a multichannel RF coil is presented. This strategy was validated using a 16-channel RF coil at 7 T for unilateral and bilateral commercial DBS electrodes inside a uniform phantom.

摘要

目的

本研究旨在提出一种计算多通道射频线圈的植入体友好(IF)激励模式的策略,该策略可减轻深部脑刺激(DBS)电极中射频(RF)加热接触的 RF 加热。

方法

植入式电极上产生的感应 RF 电流会产生散射磁场,其左旋圆偏振分量( )使用 映射技术近似,并随后用作电极感应电流的量度。使用这种方法,计算了 DBS 电极上多通道 RF 线圈每个通道产生的相对感应电流。通过计算相对感应电流的零空间,确定相应多通道线圈的 IF 模式。通过在 7T MRI 扫描仪上使用 16 通道收发 RF 线圈进行加热和成像研究,在均匀体模内放置单侧和双侧商业 DBS 电极(定向导联;Infinity DBS 系统,雅培实验室),对所提出的策略进行了测试和验证。

结果

当用于高功率涡轮自旋回波序列时,个体 IF 模式或从 IF 模式获得的调谐解决方案均不会引起明显的温度升高。相比之下,使用扫描仪工具包(即基于每通道 场)进行调谐会导致相同输入功率下温度升高超过 2°C。

结论

提出了一种计算多通道射频线圈 IF 模式的策略。该策略使用 16 通道 RF 线圈在 7T 下在均匀体模内对单侧和双侧商业 DBS 电极进行了验证。

相似文献

1
Implant-friendly MRI of deep brain stimulation electrodes at 7 T.7T 下深部脑刺激电极的植入友好型 MRI 检查
Magn Reson Med. 2023 Dec;90(6):2627-2642. doi: 10.1002/mrm.29825. Epub 2023 Aug 2.

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