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Optoacoustic technique for noninvasive monitoring of blood oxygenation: a feasibility study

机译:无创监测血液氧合的光声技术:可行性研究

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摘要

Replacement of invasive monitoring of cerebral venous oxygenation with noninvasive techniques offers great promise in the management of life-threatening neurologic illnesses including traumatic brain injury. We developed and built an optoacoustic system to noninvasively monitor cerebral venous oxygenation; the system includes a nanosecond Nd:YAG laser and a specially designed optoacoustic probe. We tested the system in vitro in sheep blood with experimentally varied oxygenation. Our results demonstrated that (1) the amplitude and temporal profile of the optoacoustic waves increase with blood oxygenation in the range from 24% to 92%, (2) optoacoustic signals can be detected despite optical and acoustic attenuation by thick bone, and (3) the system is capable of real-time and continuous measurements. These results suggest that the optoacoustic technique is technically feasible for continuous, noninvasive monitoring of cerebral venous oxygenation.
机译:用无创技术代替对脑静脉氧合的有创监测,为处理包括颅脑损伤在内的危及生命的神经疾病提供了广阔的前景。我们开发并建立了一个光声系统来无创地监测脑静脉氧合。该系统包括一个纳秒级的Nd:YAG激光器和一个专门设计的光声探头。我们在具有不同氧合作用的绵羊血中体外测试了该系统。我们的结果表明(1)随血液氧合的增加,光声波的振幅和时间分布在24%到92%的范围内增加;(2)尽管厚骨造成了光和声衰减,但仍可以检测到光声信号;和(3 )系统能够进行实时和连续的测量。这些结果表明,光声技术在连续,无创性监测脑静脉氧合作用方面在技术上是可行的。

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