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Comparison of EPR oximetry and Eppendorf polarographic electrode assessments of rat brain PtO2

机译:EPR血氧测定法和Eppendorf极谱电极评估大鼠脑PtO2的比较

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EPR oximetry is a promising, relatively non-invasive method for monitoring the partial pressure of oxygen in tissue (PtO2) that has proved useful in following changes under various physiologic and pathophysiologic conditions. Optimal utilization of the method will be facilitated by systematic comparisons with other available methods. Here we report on the absolute values of rat brain PtO2 using EPR and the more widely used Eppendorf polarographic microelectrode system in the same brain. EPR used an L-band (1.2 GHz) spectrometer and implanted lithium phthalocyanine (LiPc) as the oxygen-sensitive paramagnetic material. Eppendorf measurements were made by a needle probe moved vertically through the cortex at 0.5 mm intervals in three tracks including one adjacent to the location of the LiPc. Several conclusions were drawn, including, (1) the average PtO2 measured by the two methods was similar but EPR reported a significantly higher average PtO2, (2) there was poor correlation between the values in the same animal on the same side of the brain, (3) the Eppendorf reported a larger range of values and (4) the heterogeneity of oxygen levels in the brain and the areas sampled by the two methods provide an adequate explanation for the observed differences.
机译:EPR血氧饱和度测定法是一种有前景的,相对无创的监测组织中氧分压(PtO2)的方法,已证明可用于跟踪各种生理和病理生理条件下的变化。通过与其他可用方法进行系统比较,可以促进该方法的最佳利用。在这里,我们报道了使用EPR和同一脑中使用更广泛的Eppendorf极谱微电极系统对大鼠脑PtO2的绝对值。 EPR使用L波段(1.2 GHz)光谱仪并植入了酞菁锂(LiPc)作为对氧敏感的顺磁性材料。 Eppendorf测量是通过一根针探针以0.5 mm的间隔在三个轨迹中垂直移动通过​​皮质而进行的,其中三个轨迹与LiPc的位置相邻。得出了一些结论,其中包括:(1)两种方法测得的平均PtO2相似,但EPR报告的平均PtO2明显更高,(2)同一只动物在大脑同一侧的值之间相关性很差。 ,(3)Eppendorf报告了更大的数值范围,(4)大脑中氧气水平的异质性以及通过两种方法采样的区域为观察到的差异提供了充分的解释。

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