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Optoacoustic monitoring of cerebral venous blood oxygenation through extracerebral blood

机译:大脑外血液对脑静脉血氧合的光声监测

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摘要

There is strong clinical evidence that controlling cerebral venous oxygenation (oxyhemoglobin saturation) is critically important for patients with severe traumatic brain injury as well as for patients undergoing cardiac surgery. However, the only available method for cerebral venous blood oxygenation monitoring is invasive and requires catheterization of the internal jugular vein. We designed and built a novel optoacoustic monitor of cerebral venous oxygenation as measured in the superior sagittal sinus (SSS), the large midline cerebral vein. To the best of our knowledge, optical monitoring of cerebral venous blood oxygenation through overlying extracerebral blood is reported for the first time in this paper. The system was capable of detecting SSS signals in vivo at 700, 800, and 1064 nm through the thick (5–6 mm) sheep skull containing the circulating blood. The high (submillimeter) in-depth resolution of the system provided identification of the SSS peaks in the optoacoustic signals. The SSS peak amplitude closely followed the actual SSS blood oxygenation measured invasively using catheterization, blood sampling, and “gold standard” CO-Oximetry. Our data indicate the system may provide accurate measurement of the SSS blood oxygenation in patients with extracerebral blood over the SSS.
机译:有强有力的临床证据表明,控制脑静脉的氧合(氧合血红蛋白饱和度)对于患有严重脑外伤的患者以及接受心脏手术的患者至关重要。然而,用于脑静脉血氧监测的唯一可用方法是侵入性的,并且需要对颈内静脉进行导管插入术。我们设计并构建了一种新颖的光声监测器,用于在上矢状窦(SSS)(大中线脑静脉)中测量脑静脉氧合。据我们所知,本文首次报道了通过覆盖脑外血液对脑静脉血氧的光学监测。该系统能够通过包含循环血液的厚(5–6 mm)绵羊头骨在700、800和1064 nm处检测到体内的SSS信号。系统的高(亚毫米)深度分辨率可识别光声信号中的SSS峰。 SSS峰值幅度紧随使用导管插入术,血液采样和“黄金标准” CO血氧饱和度法有创测量的实际SSS血液氧合程度。我们的数据表明,该系统可以通过SSS为大脑外血液患者提供SSS血液氧合的准确测量。

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