首页> 外文OA文献 >A medical device-grade T1 and ECV phantom for global T1 mapping quality assurance - the T$_1$ Mapping and ECV Standardization in cardiovascular magnetic resonance (T1MES) program
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A medical device-grade T1 and ECV phantom for global T1 mapping quality assurance - the T$_1$ Mapping and ECV Standardization in cardiovascular magnetic resonance (T1MES) program

机译:用于全球T1映射质量保证的医疗设备级T1和ECV幻像-心血管磁共振(T1MES)计划中的T $ _1 $映射和ECV标准化

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摘要

$extbf{Background:}$ T$_1$ mapping and extracellular volume (ECV) have the potential to guide patient care and serve as surrogate end-points in clinical trials, but measurements differ between cardiovascular magnetic resonance (CMR) scanners and pulse sequences. To help deliver T$_1$ mapping to global clinical care, we developed a phantom-based quality assurance (QA) system for verification of measurement stability over time at individual sites, with further aims of generalization of results across sites, vendor systems, software versions and imaging sequences. We thus created T1MES: The T1 Mapping and ECV Standardization Program. $extbf{Methods:}$ A design collaboration consisting of a specialist MRI small-medium enterprise, clinicians, physicists and national metrology institutes was formed. A phantom was designed covering clinically relevant ranges of T$_1$ and T$_2$ in blood and myocardium, pre and post-contrast, for 1.5 T and 3 T. Reproducible mass manufacture was established. The device received regulatory clearance by the Food and Drug Administration (FDA) and Conformité Européene (CE) marking. $extbf{Results:}$ The T1MES phantom is an agarose gel-based phantom using nickel chloride as the paramagnetic relaxation modifier. It was reproducibly specified and mass-produced with a rigorously repeatable process. Each phantom contains nine differently-doped agarose gel tubes embedded in a gel/beads matrix. Phantoms were free of air bubbles and susceptibility artifacts at both field strengths and T$_1$ maps were free from off-resonance artifacts. The incorporation of high-density polyethylene beads in the main gel fill was effective at flattening the $B_1$ field. T$_1$ and T$_2$ values measured in T1MES showed coefficients of variation of 1 % or less between repeat scans indicating good short-term reproducibility. Temperature dependency experiments confirmed that over the range 15-30 °C the short-T$_1$ tubes were more stable with temperature than the long-T$_1$ tubes. A batch of 69 phantoms was mass-produced with random sampling of ten of these showing coefficients of variations for T$_1$ of 0.64 ± 0.45 % and 0.49 ± 0.34 % at 1.5 T and 3 T respectively. $extbf{Conclusion:}$ The T1MES program has developed a T$_1$ mapping phantom to CE/FDA manufacturing standards. An initial 69 phantoms with a multi-vendor user manual are now being scanned fortnightly in centers worldwide. Future results will explore T$_1$ mapping sequences, platform performance, stability and the potential for standardization.
机译:$ textbf {背景:} $ T $ _1 $映射和细胞外体积(ECV)有潜力指导患者护理并在临床试验中充当替代终点,但心血管磁共振(CMR)扫描仪和脉搏的测量方法有所不同序列。为了帮助提供T $ _1 $到全球临床护理的映射,我们开发了基于幻像的质量保证(QA)系统,用于验证各个站点随时间推移的测量稳定性,并进一步实现跨站点,供应商系统,软件的结果通用化版本和成像序列。因此,我们创建了T1MES:T1映射和ECV标准化计划。 $ textbf {方法:} $形成了由MRI专业中小型企业,临床医生,物理学家和国家计量机构组成的设计协作。设计了一个幻像,涵盖了与临床相关的T和T $ _1 $和T $ _2 $在血液中和造影剂之前和之后的1.5 T和3 T范围。建立了可重复的批量生产方法。该设备已获得美国食品药品管理局(FDA)和欧洲合格认证(CE)标记的监管许可。 $ textbf {结果:} $ T1MES体模是一种基于琼脂糖凝胶的体模,使用氯化镍作为顺磁性弛豫调节剂。它经过严格的重复过程,可重复指定并批量生产。每个体模包含九个不同掺杂的琼脂糖凝胶管,它们嵌入凝胶/微珠基质中。幻影在场强和T $ _1 $贴图上均没有气泡和磁化伪影,而在共振下没有偏音伪影。在主凝胶填充物中加入高密度聚乙烯珠粒可以有效地平整$ B_1 $字段。在T1MES中测得的T $ _1 $和T $ _2 $值在两次重复扫描之间显示出1%或更低的变异系数,表明短期再现性良好。温度依赖性实验证实,在15-30°C的温度范围内,短T $ _1 $管比长T $ _1 $管更稳定。批量生产了69个幻像,其中十个幻像的随机采样显示了在1.5 T和3 T时T $ _1 $的T $ _1 $的变异系数分别为0.64±0.45%和0.49±0.34%。 $ textbf {结论:} $ T1MES程序开发了一个T $ _1 $幻象,映射到CE / FDA制造标准。现在,每两周在全球中心扫描带有多厂商用户手册的初始69张幻像。未来的结果将探索T $ _1 $的映射顺序,平台性能,稳定性以及标准化的潜力。

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