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Anatomical, functional and metabolic imaging of radiation-induced lung injury using hyperpolarized MRI

机译:超极化MRI对放射性肺损伤的解剖,功能和代谢成像

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MRI of hyperpolarized ~(129)Xe gas and ~(13)C-enriched substrates (e.g. pyruvate) presents an unprecedented opportunity to map anatomical, functional and metabolic changes associated with lung injury. In particular, inhaled hyperpolarized ~(129)Xe gas is exquisitely sensitive to changes in alveolar microanatomy and function accompanying lung inflammation through decreases in the apparent diffusion coefficient (ADC) of alveolar gas and increases in the transfer time (T_(tr)) of xenon exchange from the gas and into the dissolved phase in the lung. Furthermore, metabolic changes associated with hypoxia arising from lung injury may be reflected by increases in lactate-to-pyruvate signal ratio obtained by magnetic resonance spectroscopic imaging following injection of hyperpolarized [1-~(13)C]pyruvate. In this work, the application of hyperpolarized ~(129)Xe and ~(13)C MRI to radiation-induced lung injury (RILI) is reviewed and results of ADC, T_(tr) and lactate-to-pyruvate signal ratio changes in a rat model of RILI are summarized. These results are consistent with conventional functional (i.e. blood gases) and histological (i.e. tissue density) changes, and correlate significantly with inflammatory cell counts (i.e. macrophages). Hyperpolarized MRI may provide an earlier indication of lung injury associated with radiotherapy of thoracic tumors, potentially allowing adjustment of treatment before the onset of severe complications and irreversible fibrosis.
机译:MRI对超极化〜(129)Xe气体和〜(13)C富集的底物(例如丙酮酸)提供了前所未有的机会来绘制与肺损伤相关的解剖,功能和代谢变化。尤其是,吸入的超极化〜(129)Xe气体对肺泡微解剖结构的变化非常敏感,并且通过减少肺泡气体的表观扩散系数(ADC)和增加肺泡的转移时间(T_(tr))对伴随肺部炎症的功能敏感。氙气从气体交换并进入肺部溶解相。此外,与肺损伤相关的缺氧相关的代谢变化可通过注射超极化[1-〜(13)C]丙酮酸盐后通过磁共振波谱成像获得的乳酸与丙酮酸盐信号比的增加来反映。在这项工作中,回顾了超极化〜(129)Xe和〜(13)C MRI在放射诱发的肺损伤(RILI)中的应用,并且ADC,T_(tr)和乳酸对丙酮酸信号比的变化结果总结了RILI的大鼠模型。这些结果与常规功能(即血气)和组织学(即组织密度)变化是一致的,并且与炎性细胞计数(即巨噬细胞)显着相关。超极化MRI可以提供与胸腔肿瘤放疗相关的肺损伤的早期指征,从而有可能在出现严重并发症和不可逆性纤维化之前调整治疗方案。

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