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首页> 外文期刊>AJNR. American journal of neuroradiology >Imaging brain oxygenation with MRI using blood oxygenation approaches: Methods, validation, and clinical applications
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Imaging brain oxygenation with MRI using blood oxygenation approaches: Methods, validation, and clinical applications

机译:使用血液氧合方法通过MRI对脑氧合成像:方法,验证和临床应用

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摘要

In many pathophysiologic situations, including brain neoplasms, neurodegenerative disease, and chronic and acute ischemia, an imbalance exists between oxygen tissue consumption and delivery. Furthermore, oxygenation changes following a stress challenge, such as with carbogen gas or acetazolamide, can yield information about cerebrovascular reactivity. The unique sensitivity of the BOLD effect to the presence of deoxyhemoglobin has led to its widespread use in the field of cognitive neurosciences. However, the high spatial and temporal resolution afforded by BOLD imaging does not need to be limited to the study of healthy brains. While the complex relationship between the MR imaging signal and tissue oxygenation hinders a direct approach, many different methods have been developed during the past decade to obtain specific oxygenation measurements. These include qBOLD, phase- and susceptibility-based imaging, and intravascular T2-based approaches. The aim of this review is to give an overview of the theoretic basis of these methods as well as their application to measure oxygenation in both healthy subjects and those with disease.
机译:在许多病理生理情况下,包括脑肿瘤,神经退行性疾病以及慢性和急性缺血,氧组织的消耗和输送之间存在不平衡。此外,在压力挑战后,例如使用碳氢化合物气体或乙酰唑胺,氧合作用变化会产生有关脑血管反应性的信息。 BOLD效应对脱氧血红蛋白存在的独特敏感性已导致其在认知神经科学领域的广泛应用。但是,BOLD成像所提供的高空间和时间分辨率不必局限于健康大脑的研究。尽管MR成像信号与组织氧合之间的复杂关系阻碍了直接方法的应用,但在过去的十年中,已经开发了许多不同的方法来获得特定的氧合测量值。这些包括qBOLD,基于相位和磁化率的成像以及基于血管内T2的方法。这篇综述的目的是概述这些方法的理论基础,以及它们在测量健康受试者和疾病受试者中的氧合作用方面的应用。

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