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Effects of acetazolamide on the micro- and macro-vascular cerebral hemodynamics: a diffuse optical and transcranial doppler ultrasound study

机译:乙酰唑胺对微血管和大血管脑血流动力学的影响: 扩散光学和经颅多普勒超声研究

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摘要

Acetazolamide (ACZ) was used to stimulate the cerebral vasculature on ten healthy volunteers to assess the cerebral vasomotor reactivity (CVR). We have combined near infrared spectroscopy (NIRS), diffuse correlation spectroscopy (DCS) and transcranial Doppler (TCD) technologies to non-invasively assess CVR in real-time by measuring oxy- and deoxy-hemoglobin concentrations, using NIRS, local cerebral blood flow (CBF), using DCS, and blood flow velocity (CBFV) in the middle cerebral artery, using TCD. Robust and persistent increases in oxy-hemoglobin concentration, CBF and CBFV were observed. A significant agreement was found between macro-vascular (TCD) and micro-vascular (DCS) hemodynamics, between the NIRS and TCD data, and also within NIRS and DCS results. The relative cerebral metabolic rate of oxygen, rCMRO2, was also determined, and no significant change was observed. Our results showed that the combined diffuse optics-ultrasound technique is viable to follow (CVR) and rCMRO2 changes in adults, continuously, at the bed-side and in real time.
机译:乙酰唑胺(ACZ)用于刺激十名健康志愿者的脑血管,以评估脑血管舒缩反应性(CVR)。我们结合了近红外光谱(NIRS),扩散相关光谱(DCS)和经颅多普勒(TCD)技术,通过使用NIRS测量氧和脱氧血红蛋白的浓度,通过无创实时评估CVR,并使用NIRS,局部脑血流(DCF)(使用DCS),以及大脑中动脉的血流速度(CBFV)(使用TCD)。观察到氧合血红蛋白浓度,CBF和CBFV持续且持续增加。在大血管(TCD)和微血管(DCS)的血流动力学之间,在NIRS和TCD数据之间以及在NIRS和DCS结果之间发现了显着的一致性。还确定了相对的脑氧代谢率rCMRO2,未观察到明显变化。我们的研究结果表明,结合使用漫射光学-超声技术,可以连续不断地,实时地在床边跟踪(CVR)成人和rCMRO2的变化。

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