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Magnetic Resonance Navigation of a Bead Inside a Three-Bifurcation PMMA Phantom Using an Imaging Gradient Coil Insert

机译:使用成像梯度线圈插入物在三分叉PMMA幻象内的磁珠的磁共振导航

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This paper reports the successful navigation of a 1-mm Chrome-Steel bead along three consecutive polymethyl methacrylate channels inside the bore of a 1.5-T magnetic resonance imaging (MRI) scanner. The bead traveled at a mean velocity of 14 cm·s$^{-1}$. This was accomplished using an imaging gradient coil (IGC) insert located inside the MRI tube. While targeting one side of a bifurcation has been previously demonstrated using unidirectional gradient coils, this is the first time that magnetic resonance navigation (MRN) of a bead along consecutive channels is reported. Experimental results confirm that a clinical regular MRI can be used to propel a 1-mm device. In addition, when used at maximum power, IGC temperature rise becomes a serious issue that can ultimately damage the insert and limit the overall performance. Consequently, this paper aims to give some insight into coil temperature management for IGC-assisted procedures. A 33-min thermal stress test was carried out using 100% of the IGC power. Steady-state oscillation can be reached by interleaving propulsion periods with cooling periods, thus enabling longer propulsion procedures. Experimental data showed that the cooling time can be used for imaging purposes with no performance loss, thus enabling MRN-assisted procedures with multiplexed particle distribution assessment.
机译:本文报道了一个1.5毫米磁共振钢(MRI)扫描仪内孔中三个连续的聚甲基丙烯酸甲酯通道成功地导航了一个1毫米铬钢珠的过程。珠子以14 cm·s $ ^ {-1} $的平均速度行进。这是通过使用位于MRI管内部的成像梯度线圈(IGC)插件来完成的。虽然先前已经使用单向梯度线圈证明了瞄准分叉的一侧,但这是首次报道了磁珠沿连续通道的磁共振导航(MRN)。实验结果证实,临床常规MRI可用于推动1毫米设备。此外,以最大功率使用时,IGC温度升高成为一个严重的问题,最终可能会损坏插入件并限制整体性能。因此,本文旨在为IGC辅助程序的线圈温度管理提供一些见识。使用IGC功率的100%进行了33分钟的热应力测试。通过使推进周期与冷却周期交织可以达到稳态振荡,从而实现更长的推进程序。实验数据表明,冷却时间可用于成像目的,而不会造成性能损失,因此可以在具有多层粒子分布评估的MRN辅助过程中进行。

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