Kim Dong-Hun, Georghiou George E, Won Chulho
School of Electrical Eng. and Computer Science, Kyungpook National University, Daegu 702-701, Korea.
IEEE Trans Biomed Eng. 2006 Apr;53(4):720-5. doi: 10.1109/TBME.2006.870244.
In this paper, a carefully designed conductive shield plate is presented, which helps to improve localization of the electric field distribution induced by transcranial magnetic stimulation for neuron stimulation. The shield plate is introduced between a figure-of-eight coil and the head. In order to accurately predict the field distribution inside the brain and to examine the effects of the shield plate, a realistic head model is constructed from magnetic resonance image data with the help of image processing tools and the finite-element method in three dimensions is employed. Finally, to show the improvements obtained, the results are compared with two conventional coil designs. It is found that an incorporation of the shield plate into the coil, effectively improves the induced field localization by more than 50%, and prevents other parts of the brain from exposure to high pulsed magnetic fields.
本文提出了一种精心设计的导电屏蔽板,有助于改善经颅磁刺激诱导的用于神经元刺激的电场分布的定位。该屏蔽板被引入到一个八字形线圈和头部之间。为了准确预测脑内的场分布并研究屏蔽板的效果,借助图像处理工具从磁共振图像数据构建了一个逼真的头部模型,并采用三维有限元方法。最后,为了展示所取得的改进,将结果与两种传统线圈设计进行了比较。结果发现,将屏蔽板并入线圈中,能有效将感应场定位提高50%以上,并防止大脑的其他部分暴露于高脉冲磁场中。