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Coherent Hemodynamics Spectroscopy for Dynamic Measurements of Absolute Cerebral Blood Flow

机译:绝对脑血流动态测量的相干血流动力学光谱

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Coherent Hemodynamics Spectroscopy (CHS) is a novel technique for quantitative assessment of cerebral hemodynamics based on dynamic near infrared spectroscopy (NIRS) measurements. Here, we present a new approach for dynamic measurements of absolute cerebral blood flow (CBF) with NIRS and CHS in one healthy subject during transient changes of mean arterial pressure (MAP) in normal breathing and in hyperventilation conditions. Hyperventilation is known to reduce blood flow and enhance cerebral autoregulation. During hyperventilation, with respect to normal breathing at baseline, we found a lower absolute CBF (hyperventilation: 32 ± 3 ml/100 g/min; normal breathing: 35 ± 3 ml/100 g/min) and a faster CBF recovery to baseline (time of half recovery: 6 s for hyperventilation; 11 sfornormalbreathing).Theseresultsdemonstrate the application of NIRS and CHS for quantitative, noninvasive, dynamic measurements of cerebral perfusion and cerebral autoregulation in the local cerebral microcirculation.
机译:相干血液动力学光谱(CHS)是一种基于动态近红外光谱(NIRS)测量的脑血流动动力学定量评估的新技术。在这里,我们提出了一种新的方法,用于在正常呼吸瞬态动脉压(MAP)的瞬态变化期间,在一个健康受试者中与NIRS和CHS动态测量的新方法,并在正常呼吸和过度换气条件下。已知过渗透以减少血液流动并提高脑自动调节。在过度通气期间,关于基线的正常呼吸,我们发现绝对的绝对CBF(过度通气:32±3ml / 100g / min;正常呼吸:35±3ml / 100g / min),并将CBF恢复更快至基线(半复苏的时间:6秒用于过度通气; 11个SFORNORMALBREALING)。验证NIRS和CHS在局部脑微循环中的脑灌注和脑自身测量的定量,非侵入性,动态测量的应用。

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