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A whole-body Fast Field-Cycling scanner for clinical molecular imaging studies

机译:用于临床分子成像研究的全身快速现场循环扫描仪

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Fast Field-Cycling (FFC) is a well-established Nuclear Magnetic Resonance (NMR) technique that exploits varying magnetic fields to quantify molecular motion over a wide range of time scales, providing rich structural information from nanometres to micrometres, non-invasively. Previous work demonstrated great potential for FFC-NMR biomarkers in medical applications; our research group has now ported this technology to medical imaging by designing a whole-body FFC Magnetic Resonance Imaging (FFC-MRI) scanner capable of performing accurate measurements non-invasively over the entire body, using signals from water and fat protons. This is a unique tool to explore new biomarkers related to disease-induced tissue remodelling. Our approach required making radical changes in the design, construction and control of MRI hardware so that the magnetic field is switched within 12.5?ms to reach any field strength from 50?μT to 0.2?T, providing clinically useful images within minutes. Pilot studies demonstrated endogenous field-dependant contrast in biological tissues in good agreement with reference data from other imaging modalities, confirming that our system can perform multiscale structural imaging of biological tissues, from nanometres to micrometres. It is now possible to confirm ex vivo results obtained from previous clinical studies, offering applications in diagnosis, staging and monitoring treatment for cancer, stroke, osteoarthritis and oedema.
机译:快速现场循环(FFC)是一种良好的核磁共振(NMR)技术,该技术利用不同的磁场来量化在各种时间尺度上的分子运动,从纳米到微量测量,非侵入性地提供富有的结构信息。以前的工作表明了医疗应用中FFC-NMR生物标志物的巨大潜力;我们的研究小组现在已经通过设计能够在整个身体上无侵入性的全身进行准确测量的全身FFC磁共振成像(FFC-MRI)扫描仪将该技术移植到医学成像。这是探索与疾病诱导的组织重塑相关的新生物标志物的独特工具。我们的方法需要制造MRI硬件的设计,构造和控制的根本改变,使得磁场在12.5℃的12.5℃内切换,以达到50ΩμT至0.2≤T的任何场强,在几分钟内提供临床有用的图像。试点研究表明,与来自其他成像方式的参考数据相一致,证实了我们的系统可以从纳米到微量测量的生物组织的多尺度结构成像的基础组织中生物组织中的内源性场依赖性对比。现在可以确认从先前的临床研究获得的前体内结果,为癌症,中风,骨关节炎和水肿和水肿提供诊断,分期和监测治疗的应用。

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