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Non-contact Raman spectroscopic pH measurement of cerebrospinal fluid: in vivo rat and perimortem swine models

机译:脑脊液的非接触式拉曼光谱法测量:在体内大鼠和周边猪型猪

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We recently reported the first noninvasive, label free measurement of pH in a bodily fluid in vivo using only Ramanspectra i.e. in vivo rat model measurements probing the immediate vicinity of a contusive spinal cord injury (SCI) inthe first minutes and hours after injury. Calibrated and assigned using Raman spectra of authentic materials, in therat model we were not able to sample the cerebrospinal fluid (CSF) to allow comparison with an independentmeasurement of the pH. Swine presents a better model because they allow physical sampling of CSF, although stillnot ideal for our purposes. We were only able to physically sample CSF from the fourth cerebral ventricle of 2different animals, before and after all spectral measurements on cords were completed. One measurement each for 2different animals on physically sampled CSF averaged a pH of 7.001±0.106 (N=2) as per standard laboratoryinstrumentation. Using a dynamic analysis and the Henderson-Hasselbalch equation, the average of (N=12)noninvasive Raman-based pH measurements of CSF was 7.073±0.156 and at >95% confidence there is nostatistically significant difference between the Raman-based and the physically sampled results. We discuss thedifference between the dynamic and static analysis, the implications for our understanding of SCI, the accuracy,precision, calibration, general applicability of this approach and future work.
机译:我们最近报告了第一次无侵入性,仅使用拉曼在体内的身体流体中自由测量pH值光谱I.在体内大鼠模型中测量探测概括脊髓损伤(SCI)的立即附近受伤后的第一分钟和小时。使用真实材料的拉曼光谱校准并分配大鼠模型我们无法捕获脑脊液(CSF)以允许与独立的比较测量pH值。猪呈现出更好的模型,因为它们允许CSF的物理采样,但仍然存在不适合我们的目的。我们只能从第四次脑室中物理样本CSF完成不同的动物,之前和之后的所有光谱测量完成。每个测量每个2根据标准实验室,物理上采样的CSF上的不同动物平均pH为7.001±0.106(n = 2)仪表。使用动态分析和Henderson-Hasselbalch方程,平均(n = 12)基于非侵入的拉曼的CSF的pH测量值为7.073±0.156,at> 95%的信心没有基于拉曼和物理采样的结果之间的统计学意义差异。我们讨论了这一点动态和静态分析之间的差异,对我们对SCI的理解的影响,准确性,精确,校准,这种方法的一般适用性和未来的工作。

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