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Balanced, bi-planar magnetic field and field gradient coils for field compensation in wearable magnetoencephalography

机译:可穿戴磁盘术中的现场补偿均衡,双平面磁场和场梯度线圈

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To allow wearable magnetoencephalography (MEG) recordings to be made on unconstrained subjects the spatially inhomogeneous remnant magnetic field inside the magnetically shielded room (MSR) must be nulled. Previously, a large bi-planar coil system which produces uniform fields and field gradients was used for this purpose. Its construction presented a significant challenge, six distinct coils were wound on two 1.6?×?1.6?msup2/sup planes. Here, we exploit shared coil symmetries to produce coils simultaneously optimised to generate homogenous fields and gradients. We show nulling performance comparable to that of a six-coil system is achieved with this three-coil system, decreasing the strongest field component Bsubx/sub by a factor of 53, and the strongest gradient dBsubx/sub/dz by a factor of 7. To allow the coils to be used in environments with temporally-varying magnetic interference a dynamic nulling system was developed with a shielding factor of 40?dB at 0.01?Hz. Reducing the number of coils required and incorporating dynamic nulling should allow for greater take-up of this technology. Interactions of the coils with the high-permeability walls of the MSR were investigated using a method of images approach. Simulations show a degrading of field uniformity which was broadly consistent with measured values. These effects should be incorporated into future designs.
机译:为了允许在不受约束的受试者上进行可穿戴的磁脑(MEG)录像,必须为磁屏蔽室(MSR)内的空间不均匀残余磁场。以前,为此目的使用产生均匀场和场梯度的大型双平面线圈系统。其施工提出了一个重大挑战,六个不同的线圈缠绕在两个1.6?×1.6?m 2 平面上。在这里,我们利用共享线圈对称,以产生同时优化的线圈以产生同质领域和梯度。我们显示与该三线圈系统实现的六线圈系统的效果相当的性能,将最强的场分量B x 减少了53系数,最强的梯度db x / dz为7.允许在具有时间变化磁干扰的环境中使用的线圈动态无效系统被开发,屏蔽因子为40Ω·赫兹。减少所需的线圈数量和结合动态效果的数量,应允许更大的卷取该技术。使用一种图像方法来研究线圈与MSR的高渗透壁的相互作用。仿真显示出与测量值的广泛一致的域均匀性的降低。这些效果应纳入未来的设计中。

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