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Continuous noninvasive in vivo monitoring of intravascular plasma volume and hematocrit changes in response to blood removal and fluid replacement in a rat model

机译:连续无创体内监测大鼠模型中血管内血浆容量和血细胞比容响应除血和补液的变化

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We report a new algorithm and measurement system that permits simultaneous monitoring of the hematocrit and plasma volume fraction of blood within the intravascular space of an optically probed volume of skin. The system involves probing with a near infrared laser and simultaneously collecting the Rayleigh and Mie scattered light as one raw signal and the undifferentiated Raman and fluorescence emission as the second raw signal. Those two physically independent raw signals and six parameters that can be obtained by either direct calculation or empirical calibration permit monitoring of the blood in rat paws. We tested a device based on the algorithm in the context of improving detection of blood loss for people with an early undiagnosed internal hemorrhage via real-time monitoring of signal changes with direct correlation to hematocrit. We performed experiments monitoring rat paw skin in vivo while removing blood, centrally or peripherally, and then adding replacement fluids such as Normocarb and blood. Blood removal itself elicits a predictable and consistent response, decreasing hematocrit and increasing relative plasma volume, that depends on the rate and location of removal, the total amount of blood removed, the location of monitoring, and possibly other factors as yet unknown. Similarly, replacing the blood with whole blood vs. saline consistently produces a rational range of responses. Calibration across subjects and the measurement of absolute hematocrit will also be discussed.
机译:我们报告了一种新的算法和测量系统,该系统可以同时监视光学探测皮肤体积的血管内空间内的血细胞比容和血浆体积分数。该系统包括用近红外激光探测,并同时收集瑞利和米氏散射光作为一个原始信号,未分化的拉曼光谱和荧光发射作为第二个原始信号。可以通过直接计算或经验校准获得的这两个物理上独立的原始信号和六个参数,可以监视大鼠爪中的血液。我们通过实时监测与血细胞比容直接相关的信号变化,改善了对早期未诊断内部出血患者的失血检测,从而对基于该算法的设备进行了测试。我们进行了实验,在体内监测大鼠爪状皮肤,同时从中央或周围去除血液,然后添加替代液,例如诺莫卡布和血液。采血本身会引起可预测的一致反应,减少血细胞比容并增加相对血浆体积,这取决于采血的速度和位置,采血的总量,监测的位置以及可能还未知的其他因素。同样,用全血和生理盐水代替血液可以始终产生合理的反应范围。还将讨论跨受试者的校准和绝对血细胞比容的测量。

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