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首页> 外文期刊>Advances in Experimental Medicine and Biology >Changes in the attenuation of near infrared spectra by the healthy adult brain during hypoxaemia cannot be accounted for solely by changes in the concentrations of oxy- and deoxy-haemoglobin.
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Changes in the attenuation of near infrared spectra by the healthy adult brain during hypoxaemia cannot be accounted for solely by changes in the concentrations of oxy- and deoxy-haemoglobin.

机译:健康成人大脑在低氧血症期间近红外光谱衰减的变化不能仅通过氧合和脱氧血红蛋白浓度的变化来解释。

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It has been suggested that changes in oxidised cytochrome c oxidase concentration ([oxCCO]) measured using cerebral near infrared spectroscopy (NIRS) may be algorithm artefacts. We examine the change in near infrared (NIR) attenuation by the healthy adult brain (n = 10) during hypoxaemia. Broadband spectroscopic data were collected during normoxia, and hypoxaemia. The UCLn algorithm was used to fit (a) oxy- (HbO2) and deoxy-haemoglobin (HHb) spectra (2 component fit), and (b) HbO2, HHb and oxidised-reduced cytochrome c oxidase difference spectra (3 component fit) to the mean change in NIR attenuation between baseline and hypoxaemia. The sum of squares of the residuals was 100 x 10(-7) OD2 for the 2 component fit and 8 x 10(-7) OD2 for the 3 component fit, and the two sets of residuals differed from each other (p = 0.0003). We compare experimental and simulated data and suggest that the 2 component residuals indicate a change in [oxCCO]. Changes in near infrared attenuation by the healthy adult brain during hypoxaemia cannot be accounted for solely by changes in oxy- and deoxy-haemoglobin concentrations. Including [oxCCO] in the algorithm improves its fit quality. These data suggest that changes in cerebral cytochrome c oxidase redox occur during hypoxaemia and that they can be detected using NIRS.
机译:已经提出,使用脑近红外光谱法(NIRS)测量的氧化细胞色素C氧化酶浓度([oxCCO])的变化可能是算法伪像。我们检查了低氧血症期间健康成人大脑(n = 10)的近红外(NIR)衰减变化。在常氧和低氧血症期间收集宽带光谱数据。使用UCLn算法拟合(a)氧(HbO2)和脱氧血红蛋白(HHb)光谱(2分量拟合),和(b)HbO2,HHb和氧化还原的细胞色素c氧化酶差异光谱(3分量拟合)基线和低氧血症之间NIR衰减的平均变化。 2个分量拟合的残差平方和为100 x 10(-7)OD2,3个分量拟合的残差平方和为8 x 10(-7)OD2,两组残差互不相同(p = 0.0003 )。我们比较了实验数据和模拟数据,并建议2个成分残差指示[oxCCO]的变化。低氧血症期间,健康的成年大脑近红外衰减的变化不能仅通过氧合和脱氧血红蛋白浓度的变化来解释。在算法中包含[oxCCO]可以提高其拟合质量。这些数据表明,在低氧血症期间发生了脑细胞色素C氧化酶氧化还原的变化,可以使用NIRS进行检测。

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