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Hyperpolarized gas MRI in pulmonology

机译:肺病学中的超极化气体MRI

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摘要

Lung diseases have a high prevalence amongst the world population and their early diagnosis has been pointed out to be key for successful treatment. However, there is still a lack of non-invasive examination methods with sensitivity to early, local deterioration of lung function. Proton-based lung MRI is particularly challenging due to short T2* times and low proton density within the lung tissue. Hyperpolarized gas MRI is aan emerging technology providing a richness of methodologies which overcome the aforementioned problems. Unlike proton-based MRI, lung MRI of hyperpolarized gases may rely on imaging of spins in the lung’s gas spaces or inside the lung tissue and thereby add substantial value and diagnostic potential to lung MRI. This review article gives an introduction to the MR physics of hyperpolarized media and presents the current state of hyperpolarized gas MRI of 3Headvasd and 129Xe in pulmonology. Key applications, ranging from static and dynamic ventilation imaging as well as oxygen-pressure mapping to 129Xe dissolved-phase imaging and spectroscopy are presented. Hyperpolarized gas MRI is compared to alternative examination methods based on MRI and future directions of hyperpolarized gas MRI are discussed.
机译:肺部疾病在世界人口中具有很高的流行率,并且指出早期诊断是成功治疗的关键。然而,仍然缺乏对肺功能的早期,局部恶化敏感的非侵入性检查方法。由于T2 * 时间短且肺组织内质子密度低,基于质子的肺MRI尤其具有挑战性。超极化气体MRI是一项新兴技术,提供了克服上述问题的丰富方法。与基于质子的MRI不同,超极化气体的肺部MRI可能依赖于肺部气体空间或肺组织内部的自旋成像,从而为肺部MRI增加实质性价值和诊断潜力。这篇综述文章介绍了超极化介质的MR物理学,并介绍了肺科中 3 Headvasd和 129 Xe的超极化气体MRI的当前状态。介绍了关键的应用,从静态和动态通风成像以及氧气压力映射到 129 Xe溶解相成像和光谱学。将超极化气体MRI与基于MRI的替代检查方法进行了比较,并讨论了超极化气体MRI的未来发展方向。

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