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Continuous, noninvasive monitoring of total hemoglobin concentration by an optoacoustic technique

机译:通过光声技术连续,无创地监测总血红蛋白浓度

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Measurement of total hemoglobin concentration [Hgb] is a blood test that is widely used to evaluate outpatients, hospital inpatients, and surgical patients, especially those undergoing surgery associated with extensive blood loss, rapid fluid administration, and transfusion of packed red blood cells. Current techniques for measurement of [Hgb] are invasive (requiring blood sampling) and cannot provide real-time, continuous monitoring. We propose to use an optoacoustic technique for noninvasive and continuous monitoring of [Hgb]. The high resolution of the optoacoustic technique may provide accurate measurement of [Hgb] by detection and analysis of optoacoustic signals induced by short optical pulses in blood circulating in arteries or veins. We designed, built, and tested in vitro (in both tissue phantoms and in preliminary in vivo experiments) a portable optoacoustic system for the monitoring of [Hgb] in the radial artery. The system includes a nanosecond laser operating in the near-infrared spectral range and a sensitive optoacoustic probe designed to irradiate the radial artery through the skin and detect optoacoustic signals induced in blood. Results of our studies demonstrated that (1) the slope of optoacoustic waves induced in blood in the transmission mode is linearly dependent on [Hgb] in the range from 6.2 to 12.4 g/dl, (2) optoacoustic signals can be detected despite optical attenuation in turbid tissue phantoms with a thickness of 1 cm, and (3) the optoacoustic system detects signals induced in blood circulating in the radial artery. These data suggest that the optoacoustic system can be used for accurate, noninvasive, real-time, and continuous monitoring of [Hgb].
机译:总血红蛋白浓度[Hgb]的测量是一项血液测试,广泛用于评估门诊病人,住院病人和外科手术患者,尤其是那些与大量失血,快速输液和输血红细胞相关的手术患者。当前测量[Hgb]的技术是侵入性的(需要血液采样),无法提供实时,连续的监控。我们建议使用光声技术进行[Hgb]的无创和连续监测。通过检测和分析由动脉或静脉中循环的血液中的短光脉冲引起的光声信号,光声技术的高分辨率可以提供[Hgb]的准确测量。我们在体外(在组织模型和体内初步实验中)设计,建造和测试了一种便携式光声系统,用于监测the动脉中的[Hgb]。该系统包括一个在近红外光谱范围内工作的纳秒激光器和一个敏感的光声探头,该探头设计为通过皮肤照射动脉并检测血液中诱导的光声信号。我们的研究结果表明:(1)在传输模式下血液中引起的光声波的斜率在6.2至12.4 g / dl的范围内线性依赖于[Hgb],(2)尽管存在光衰减,但仍可以检测到光声信号在厚度为1厘米的混浊组织体模中,(3)光声系统检测在the动脉循环血液中诱导的信号。这些数据表明,光声系统可用于[Hgb]的准确,无创,实时和连续监测。

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