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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Feldman, R.E.a , Odegaard, J.b , Handler, W.B.c , Chronik, B.A.c d Simulation of head-gradient-coil induced electric fields in a human model
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Feldman, R.E.a , Odegaard, J.b , Handler, W.B.c , Chronik, B.A.c d Simulation of head-gradient-coil induced electric fields in a human model

机译:Feldman,R.E.a,Odegaard,J.b,Handler,W.B.c,Chronik,B.A.c d在人体模型中模拟头梯度线圈感应电场

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摘要

A finite difference method was used to simulate the electric fields induced in the model by a gradient wire pattern. The pattern simulated corresponded to a design used to perform peripheral nerves stimulation experiments. The size (187.8, 169.02, and 150.24 cm tall) and position (brain and neck mode) of the model, relative to the magnet, as well as the voxel dimensions (3, 6, and 9 mm) of the model were varied to assess the effect on the simulation. The locations of stimulation reported from an experiment were classified according to nerve branch and compared with the peak-simulated electric fields. Model size and location affected the magnitude of the electric field, but not the position. Model resolution affected the location of the peak field. For the smallest resolution investigated, the nerves affected by the locations of peak stimulations in the model correlated to the frequency of stimulation in experiments. Although adequate resolution is required in order to assess the electric fields induced by gradient coil operation, the simulation of electric fields may be useful in evaluating gradient coil design prior to construction.
机译:有限差分法被用来模拟由梯度线图案在模型中感应的电场。模拟的模式对应于用于执行周围神经刺激实验的设计。模型相对于磁体的尺寸(高187.8、169.02和150.24厘米)和位置(脑和颈部模式)以及模型的体素尺寸(3、6和9 mm)被更改为评估对模拟的影响。根据神经分支对实验报告的刺激位置进行分类,并与峰值模拟电场进行比较。模型的大小和位置会影响电场的大小,但不会影响位置。模型分辨率影响峰场的位置。对于所研究的最小分辨率,受模型中峰值刺激位置影响的神经与实验中的刺激频率相关。尽管需要足够的分辨率来评估由梯度线圈操作引起的电场,但是电场的模拟对于在构造之前评估梯度线圈设计可能是有用的。

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