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Temperature Response of a Magnetic Resonance Imaging Coil Insert for the Navigation of Theranostic Agents in Complex Vascular Networks

机译:磁共振成像线圈插入物在复杂血管网络中用于治疗诊断剂导航的温度响应

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摘要

The purpose of this paper is to provide some practical insights regarding the use of a commercially available imaging coil as a magnetic resonance navigation (MRN) propulsion actuator. MRN relies on magnetic resonance imaging (MRI) technology to navigate magnetic therapeutic or imaging agents to a target location. When such a target is accessible only through complex vessel pathways, an imaging gradient coil (IGC) insert can be used to generate high slew rate gradient pulses. Although temperature rise might not be an issue for imaging routines, knowing precisely the temperature coil response is of primary importance for MRN-assisted interventions as it may limit propulsion performance and ultimately lead to system breakdown. This paper reports the impact of four parameters, namely, duty cycle, frequency, amplitude, and gradient direction on the temperature behavior of an IGC with external diameter suitable to fit inside the bore of a clinical MRI scanner and internal diameter appropriate for small animals. A minimum rise time of 300 (mu ) s was measured and magnetic gradients up to 325 mT (cdot ) m (^{-1}) were generated. The insert can sustain burst-mode propulsion at maximum power for slightly less than 2 min before reaching its maximum admissible temperature. Temperature management is one of the future challenges in MRN research.
机译:本文的目的是提供有关使用商用成像线圈作为磁共振导航(MRN)推进执行器的一些实用见解。 MRN依靠磁共振成像(MRI)技术将磁治疗剂或成像剂导航到目标位置。当只能通过复杂的血管通路访问此类目标时,可以使用成像梯度线圈(IGC)插件生成高转换率梯度脉冲。尽管温度升高对于成像程序而言可能不是问题,但准确了解温度线圈响应对于MRN辅助干预至关重要,因为它可能会限制推进性能并最终导致系统故障。本文报道了四个参数,即占空比,频率,幅度和梯度方向对IGC温度行为的影响,该IGC的外径适合于临床MRI扫描仪孔的内部,内径适合于小动物。测量最小上升时间300 (mu) s,并且磁梯度达到325 mT (cdot) m (^ {-1})< / tex-math> 生成。插入件在达到最高允许温度之前,可在最大功率下维持爆发模式推进力不到2分钟。温度管理是MRN研究中的未来挑战之一。

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