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A Structure Design Method for Reduction of MRI Acoustic Noise

机译:降低MRI声学噪声的结构设计方法

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摘要

The acoustic problem of the split gradient coil is one challenge in a Magnetic Resonance Imaging and Linear Accelerator (MRI-LINAC) system. In this paper, we aimed to develop a scheme to reduce the acoustic noise of the split gradient coil. First, a split gradient assembly with an asymmetric configuration was designed to avoid vibration in same resonant modes for the two assembly cylinders. Next, the outer ends of the split main magnet were constructed using horn structures, which can distribute the acoustic field away from patient region. Finally, a finite element method (FEM) was used to quantitatively evaluate the effectiveness of the above acoustic noise reduction scheme. Simulation results found that the noise could be maximally reduced by 6.9 dB and 5.6 dB inside and outside the central gap of the split MRI system, respectively, by increasing the length of one gradient assembly cylinder by 20 cm. The optimized horn length was observed to be 55 cm, which could reduce noise by up to 7.4 dB and 5.4 dB inside and outside the central gap, respectively. The proposed design could effectively reduce the acoustic noise without any influence on the application of other noise reduction methods.
机译:分离梯度线圈的声学问题是磁共振成像和线性加速器(MRI-LINAC)系统中的一项挑战。在本文中,我们旨在开发一种方案来减少分离梯度线圈的噪声。首先,设计具有非对称配置的分流梯度组件,以避免两个组件圆柱体以相同的共振模式振动。接下来,使用喇叭结构构造分裂主磁体的外端,该喇叭结构可以将声场分配到远离患者区域。最后,使用有限元方法(FEM)来定量评估上述声学降噪方案的有效性。仿真结果表明,通过将一个梯度组件圆柱体的长度增加20µcm,可以最大程度地将噪声在分离MRI系统的中心间隙之内和之外分别降低6.9µdB和5.6µdB。最佳的号筒长度为55 cm,可将中心间隙内外的噪音分别降低7.4 dB和5.4 dB。所提出的设计可以有效地降低噪声,而不会影响其他降噪方法的应用。

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