Lee Jae Sung, Narayana Shalini, Lancaster Jack, Jerabek Paul, Lee Dong Soo, Fox Peter
Department of Nuclear Medicine, Seoul National University College of Medicine, Seoul 110-744, South Korea.
Neuroimage. 2003 Aug;19(4):1812-9. doi: 10.1016/s1053-8119(03)00239-8.
Recording brain activity using positron emission tomography (PET) during the stimulation of different parts of the brain by transcranial magnetic stimulation (TMS) permits the mapping of neural connections in the living human brain. However, controversy remains regarding the need for micro-metal shielding of the PET scanner during magnetic stimulation. The aim of this study was to test the effects of magnetic fields generated by TMS on PET data acquisition. With TMS-on and -off in the PET field of view, transmission scans with a (68)Ge/(68)Ga pin source and emission scans with an uniform phantom filled with water and (18)F were acquired. The frequency and intensity of stimulation were set at 3-5 Hz and 70-80% of the maximum output of the stimulator, respectively. The TMS coil was placed at several locations inside the PET gantry, and the main field direction of the TMS coil was varied between parallel and perpendicular orientation to the scanner's axis. Qualitative and quantitative evaluation of the sinograms of transmission PET scans and reconstructed emission images indicated no measurable differences between TMS-on and -off and post-TMS conditions for any position or orientation. The long distance between the TMS coil and the detector block in the PET scanner, as well as the rapid reduction of the magnetic field with distance (3% of maximum field at 10 cm, in air), could explain the lack of TMS interference. The brief duration (approximately 250 micros) of the TMS pulses relative to the total PET acquisition time would also explain the lack of TMS effects. The lack of TMS effects on the PET scanner, as well as PET imaging without any shielding, has been reported by other laboratories.
在经颅磁刺激(TMS)刺激大脑不同部位的过程中,使用正电子发射断层扫描(PET)记录大脑活动,有助于绘制活体人类大脑中的神经连接图谱。然而,在磁刺激期间PET扫描仪是否需要微金属屏蔽仍存在争议。本研究的目的是测试TMS产生的磁场对PET数据采集的影响。在PET视野内开启和关闭TMS的情况下,分别使用(68)Ge/(68)Ga针源进行透射扫描,并使用充满水和(18)F的均匀体模进行发射扫描。刺激频率和强度分别设置为3 - 5Hz和刺激器最大输出的70 - 80%。将TMS线圈放置在PET机架内的几个位置,并使TMS线圈的主磁场方向在与扫描仪轴平行和垂直方向之间变化。对透射PET扫描的正弦图和重建的发射图像进行定性和定量评估表明,在任何位置或方向上,开启和关闭TMS以及TMS后条件之间均未发现可测量的差异。TMS线圈与PET扫描仪中的探测器模块之间的距离较远,以及磁场随距离快速衰减(在空气中10cm处为最大场强的3%),可以解释为何不存在TMS干扰。相对于PET总采集时间而言,TMS脉冲的持续时间较短(约250微秒)也可以解释为何不存在TMS效应。其他实验室也报道了TMS对PET扫描仪没有影响,以及无需任何屏蔽即可进行PET成像的情况。