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首页> 外文期刊>Medical Physics >Electronically rotated and translated field‐free line generation for open bore magnetic particle imaging
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Electronically rotated and translated field‐free line generation for open bore magnetic particle imaging

机译:用于开放孔磁性颗粒成像的电子旋转和直接的自由型线产生

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摘要

Purpose We propose a coil arrangement for open bore field‐free line ( FFL ) magnetic particle imaging ( MPI ) system, which is suitable for accessing the subject from the sides. The purpose of this study is twofold, to show that the FFL can be rotated and translated electronically in a volume of interest with this arrangement and to analyze the current, voltage and power requirements for a 1?T/m gradient human sized scanner for a 200?mm diameter?×?200?mm height cylindrical field of view ( FOV ). Methods We used split coils side by side with alternating current directions to generate a field‐free line. Employing two of these coil groups, one of which is rotated 90 degrees with respect to the other, a rotating FFL was generated. We conducted numerical simulations to show the feasibility of this arrangement for three‐dimensional (3D) electronical scan of the FFL . Using simulations, we obtained images of a two‐dimensional (2D) in silico dot phantom for a human size scanner with system matrix‐based reconstruction. Results Simulations showed that the FFL can be generated and rotated in one plane and can be translated in two axes, allowing for 3D imaging of a large subject with the proposed arrangement. Human sized scanner required 63–215? kW power for the selection field coils to scan the focus inside the FOV. Conclusions The proposed setup is suitable for FFL MPI imaging with an open bore configuration without the need for mechanical rotation, which is preferable for clinical usage in terms of imaging time and patient access. Further studies are necessary to determine the limitations imposed by peripheral nerve stimulation, and to optimize the system parameters and the sequence design.
机译:目的,我们提出了一种用于开放孔的磁颗粒成像(MPI)系统的线圈装置,其适用于从侧面进入对象。本研究的目的是双重,表明FFL可以用这种布置以感兴趣的体积旋转和翻译,并分析一个1?T / M梯度人尺寸扫描仪的电流,电压和功率要求直径200?×200?mm高度圆柱形视野(FOV)。方法我们并排使用分割线圈,交流方向以产生无场线。采用这些线圈组中的两个,其中一个是相对于另一个旋转90度的,产生旋转FFL。我们进行了数值模拟,以表明这种布置对FFL的三维(3D)电子扫描的可行性。使用模拟,我们在具有基于系统矩阵的重建的人尺寸扫描仪中获得了二维(2D)的图像,用于具有基于系统矩阵的重建。结果模拟表明,可以在一个平面中产生和旋转FFL,并且可以在两个轴上翻译,允许具有所提出的布置的大型对象的3D成像。人类大小的扫描仪需要63-215?选择场线圈的kw电力扫描FOV内的焦点。结论所提出的设置适用于具有开放式孔配置的FFL MPI成像,而无需机械旋转,这对于成像时间和患者通行的临床使用是优选的。进一步的研究是确定外周神经刺激施加的限制,并优化系统参数和序列设计。

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