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Practical conditions and limitations for high-spatial-resolution multisite EPR oximetry

机译:高空间分辨率多站点EPR血氧饱和度测定的实际条件和局限性

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We have previously reported a high-spatial-resolution multisite electron paramagnetic resonance (EPR) oximetry method that is based on consecutive applications of magnetic field gradients with the same direction but different magnitudes. This method that could be called also two-gradient convolution EPR oximetry has no restrictions for the shape of solid paramagnetic materials implanted in tissue and is applicable for any particulate EPR oxygen-sensitive material with a Lorentzian line shape. To enhance the utilization of this method, a previously described algorithm was used to develop user-friendly Windows-based software. Practical conditions of application of the method were established using several different model systems. It has been shown that the spectral overlap from the adjacent sites can be neglected if the splitting between the corresponding lines exceeds the largest line width by at least a factor of 1.3. An additional requirement of the method is that the second field gradient should exceed by at least 30% the value of the first gradient. It was confirmed that the error in line width determination at L-band is proportional to the noise-to-signal ratio, and does not exceed 1% a noise-to-signal ratio of 0.1 in a typical in vivo experiment. We demonstrate that the line widths of up to 10 different sites can be determined.
机译:我们先前已经报道了一种高空间分辨率的多位电子顺磁共振(EPR)血氧饱和度测定法,该方法基于具有相同方向但大小不同的磁场梯度的连续应用。该方法也可以称为两梯度卷积EPR血氧饱和度测定法,对植入组织中的固体顺磁性材料的形状没有限制,并且适用于任何具有洛伦兹线形的颗粒状EPR氧敏感材料。为了提高该方法的利用率,使用了先前描述的算法来开发用户友好的基于Windows的软件。使用几种不同的模型系统建立了该方法的实际应用条件。已经表明,如果相应线之间的分离超过最大线宽至少1.3倍,则可以忽略来自相邻位置的光谱重叠。该方法的另一个要求是第二场梯度应至少超过第一梯度值的30%。可以确定的是,在L波段确定线宽时的误差与噪声信号比成正比,在典型的体内实验中,噪声信号比不超过0.1%的1%。我们证明可以确定多达10个不同站点的线宽。

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