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Electromagnetic fields in the human body due to switched transverse gradient coils in MRI

机译:MRI中横向梯度线圈的切换导致人体中的电磁场

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Magnetic resonance imaging scans impose large gradient magnetic fields on the patient. Modern imaging techniques require this magnetic field to be switched rapidly for good resolution. However, it is believed that this can also lead to the unwanted side effect of peripheral nerve stimulation, which proves to be a limiting factor to the advancement of MRI technology. This paper establishes an analytical model for the fields produced within an MRI scanner by transverse gradient coils of known current density. Expressions are obtained for the magnetic induction vector and the electric field vector, as well as for the surface charge and current densities that are induced on the patient's body. The expressions obtained are general enough to allow the study of any combination of gradient coils whose behaviour can be approximated by Fourier series. For a realistic example coil current density and switching function, it is found that spikes of surface charge density are induced on the patient's body as the gradient field is switched, as well as loops of surface current density that mimic the coil current density. For a 10 mT m~(-1) gradient field with a rise time of 100 μs, the magnitude of the radial electric field at the body is found to be 10.3 V m~(-1). It is also found that there is a finite limit to radial electric field strength as rise time approaches zero.
机译:磁共振成像扫描会在患者身上施加较大的梯度磁场。现代成像技术要求快速切换此磁场以获得良好的分辨率。然而,据信这也可能导致周围神经刺激的不良副作用,这被证明是MRI技术发展的限制因素。本文为已知电流密度的横向梯度线圈在MRI扫描仪中产生的磁场建立了分析模型。获得关于磁感应矢量和电场矢量以及在患者身上感应的表面电荷和电流密度的表达式。所获得的表达式足够通用,可以研究梯度线圈的任何组合,其行为可以通过傅立叶级数来近似。对于一个现实的示例线圈电流密度和开关功能,发现随着梯度场的切换,在患者的身体上会产生表面电荷密度的尖峰,以及模仿线圈电流密度的表面电流密度回路。对于上升时间为100μs的10 mT m〜(-1)梯度场,在人体处的径向电场的大小为10.3 V m〜(-1)。还发现随着上升时间接近零,径向电场强度有一个有限的极限。

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