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Phantom testing of two clinical spatially-resolved NIRS instruments

机译:两种临床空间分辨NIRS仪器的幻像测试

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We used a living biological phantom to evaluate whether previously observed clinical differences in data collection between two similar near infrared spectrophotometers were due to technical design differences. A Somanetics INVOS-5100 was compared to a Hamamatsu NIRO-300. Both express the ratio of oxygenated hemoglobin to total hemoglobin concentration as a percentage, and both are intended for monitoring cerebral oxygenation status at the bedside. The living phantom simulated different bone densities and contained a low haematocrit solution of blood, intra-lipid, and saline, to which was added grower's yeast to alter oxygenation status. Results: In all trials, oxygen saturation decreased from 100% to 0 % as the yeast consumed the available oxygen. In all trials the spectrometers were significantly correlated (range: r2=0.815 to 0.995, p2>0.232). The NIRO-300 indicated oxygenation change 1 minute after addition of yeast, whereas the INVOS-5100 showed change after 5 minutes. Simulated bone thickness had almost no effect upon the NIRO-300, but did affect the INVOS-5100. Conclusion: In this study, the spectrophotometers had similar results consistent with the technical design differences: the INVOS-5100 does not report hemoglobin saturation change above 95% or below 15% while the NIRO-300 reports the full range from 100% to 0%.
机译:我们使用了活的生物模型来评估先前观察到的两个相似的近红外分光光度计之间的数据收集临床差异是否是由于技术设计差异引起的。将Somanetics INVOS-5100与Hamamatsu NIRO-300进行了比较。两者均表示含氧血红蛋白与总血红蛋白浓度之比(以百分比表示),并且都旨在监控床旁的大脑氧合状态。活体模型模拟了不同的骨密度,并包含血液,血脂和盐水的低血细胞比容溶液,并向其中添加了生长酵母以改变氧合状态。结果:在所有试验中,由于酵母消耗了可用的氧气,氧气饱和度从100%降低到0%。在所有试验中,光谱仪均显着相关(范围:r2 = 0.815至0.995,p2> 0.232)。 NIRO-300表示添加酵母1分钟后氧合变化,而INVOS-5100表示​​5分钟后氧合变化。模拟的骨骼厚度对NIRO-300几乎没有影响,但确实影响了INVOS-5100。结论:在这项研究中,分光光度计具有与技术设计差异相符的相似结果:INVOS-5100并未报告血红蛋白饱和度变化超过95%或低于15%,而NIRO-300报告了从100%到0%的整个范围。

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