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Pro-active acoustic noise reduction for magnetic resonance imaging scanners

机译:主动降低磁共振成像扫描仪的噪声

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摘要

Large acoustic noise generated by magnetic resonance imaging (MRI) scanners pose significant problems for a patient undergoing a scan, in addition to attending medical staff. A heightened sense of anxiety, difficulty communicating with medical staff, and mild irritation through to acute discomfort are all results of the large noise amplitude produced during the scanning process.udGradient coils are a component of MRI hardware that have been found to be the major contributor of acoustic noise and are thus the subject of this thesis. A gradient coil is required to produce a homogeneous linear field to excite nuclei in a predictable manner so that clear images can be obtained. A feature of gradient coils is that they must be switched on and off repeatedly during the imaging process. udThis switching generates large Lorentz forces on the chamber, which causes the chamber to deform and promotes a pressure wave inside the chamber that can be heard as acoustic noise. The problem becomes one of designing current winding patterns on the gradient coil that produce a specified linear field and have a reduced simulated acoustic noise output. This problem is studied in detail and is accomplished using a Tikhonov regularisation process.udThis thesis looks directly at theoretical methods to actively reduce simulated acoustic noise during the MRI scanning process. Pro-active noise reduction, in this work, is achieved by reducing the deflection of the gradient coil, which leads to the design of quiet gradient coils. Beginning with a relatively simple one dimensional radial coil deformation model and requiring a high level of linearity of the gradient field, designs for the current windings on the gradient coils are produced. In this first model a comparatively small reduction of 0.6 dB was attained; however, previous work was extended to account for realistic switching sequences. Next, a more sophisticated three dimensional deflection model was considered, which produced a similar small level of noise reduction, but nonetheless substantial insight into the physical process behind the generation of noise was obtained. Finally, a robust technique for designing very quiet gradient coils, reducing the noise by 49 dB, was achieved by abandoning the requirement that the gradient
机译:由磁共振成像(MRI)扫描仪产生的大声噪声,除了需要医护人员外,还给正在扫描的患者带来了严重的问题。焦虑感增强,与医护人员沟通困难以及轻微的刺激直至急性不适都是扫描过程中产生的大噪声幅度的结果。 ud梯度线圈是MRI硬件的组成部分,已被发现是主要的声噪声的贡献者,因此是本论文的主题。需要梯度线圈来产生均匀的线性场以可预测的方式激发核,从而可以获得清晰的图像。梯度线圈的一个特点是必须在成像过程中反复打开和关闭它们。 ud此开关会在腔室上产生很大的洛伦兹力,这会导致腔室变形并促进腔室内部的压力波,可将其作为声音听到。问题变成了在梯度线圈上设计电流绕组模式的一种,该电流绕组模式产生指定的线性场并且具有减小的模拟声噪声输出。对这个问题进行了详细研究,并使用Tikhonov正则化过程完成。 ud本文直接研究了在MRI扫描过程中积极减少模拟声噪声的理论方法。在这项工作中,通过减少梯度线圈的偏转来实现主动降噪,这导致了静音梯度线圈的设计。从相对简单的一维径向线圈变形模型开始,并要求梯度场具有高水平的线性度,就可以设计出梯度线圈上的电流绕组。在第一个模型中,获得了0.6 dB的相对较小的减小;但是,先前的工作已扩展到考虑实际的切换顺序。接下来,考虑了更复杂的三维挠度模型,该模型产生了类似的小程度的降噪,但是仍然获得了对产生噪声背后的物理过程的深刻了解。最后,通过放弃对梯度的要求,获得了一种用于设计非常安静的梯度线圈的可靠技术,可将噪声降低49 dB。

著录项

  • 作者

    Jackson JM;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 en
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