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Reduced cortical microvascular oxygenation in multiple sclerosis: a blinded case-controlled study using a novel quantitative near-infrared spectroscopy method

机译:多发性硬化症中皮质微血管氧合减少:使用新型定量近红外光谱法的病例对照盲研究

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摘要

Hypoxia (low oxygen) is associated with many brain disorders as well as inflammation, but the lack of widely available technology has limited our ability to study hypoxia in human brain. Multiple sclerosis (MS) is a poorly understood neurological disease with a significant inflammatory component which may cause hypoxia. We hypothesized that if hypoxia were to occur, there should be reduced microvascular hemoglobin saturation (StO2). In this study, we aimed to determine if reduced StO2 can be detected in MS using frequency domain near-infrared spectroscopy (fdNIRS). We measured fdNIRS data in cortex and assessed disability of 3 clinical isolated syndrome (CIS), 72 MS patients and 12 controls. Control StO2 was 63.5 ± 3% (mean ± SD). In MS patients, 42% of StO2 values were more than 2 × SD lower than the control mean. There was a significant relationship between StO2 and clinical disability. A reduced microvascular StO2 is supportive (although not conclusive) that there may be hypoxic regions in MS brain. This is the first study showing how quantitative NIRS can be used to detect reduced StO2 in patients with MS, opening the door to understanding how microvascular oxygenation impacts neurological conditions.
机译:低氧(低氧)与许多脑部疾病以及炎症有关,但是缺乏广泛可用的技术限制了我们研究人脑缺氧的能力。多发性硬化症(MS)是一种鲜为人知的神经系统疾病,具有明显的炎症成分,可能引起缺氧。我们假设如果发生缺氧,应降低微血管血红蛋白饱和度(StO2)。在这项研究中,我们旨在确定是否可以使用频域近红外光谱(fdNIRS)在MS中检测到还原的StO2。我们测量了皮质中的fdNIRS数据,并评估了3例临床孤立综合征(CIS),72例MS患者和12例对照的残疾。对照StO 2为63.5±3%(平均值±SD)。在MS患者中,StO2值的42%比对照平均值低2××SD。 StO2与临床残疾之间存在显着关系。减少的微血管StO2支持(尽管不是结论性的)MS大脑中可能存在缺氧区域。这是第一项研究,显示了定量NIRS如何可用于检测MS患者的StO2降低,为了解微血管氧合如何影响神经系统疾病打开了大门。

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