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Improved calibration procedure for laser Doppler perfusion monitors

机译:改进的激光多普勒血流监测仪校准程序

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摘要

Commercial laser Doppler perfusion monitors are calibrated using the perfusion value, i.e. the first order moment of the Doppler power spectrum, from a measurement in a standardized microsphere colloidal suspension under Brownian motion. The calibration perfusion value depends on several parameters of the suspension that are difficult to keep constant with adequate accuracy, such as the concentration, temperature and the microsphere size distribution. The calibration procedure itself may therefore introduce significant errors in the measured values.rnAn altered calibration procedure, where the zero order moment is used is described and demonstrated in this paper. Since the above mentioned parameters only affect the frequency content of the Doppler power spectrum and not the total power, the zero order moment will be independent of those parameters. It is shown that the variation in the calibration value, as given by measurements on different scattering liquids with a wide range of scattering properties and temperatures, is only a few percent using the proposed method. For the conventional calibration procedure, this variation corresponds to an error introduced by merely a 1°C variation in the reference liquid temperature. The proposed calibration method also enables absolute level comparisons between measured and simulated Doppler power spectra.
机译:商用激光多普勒血流监测仪是通过在布朗运动下在标准微球胶体悬浮液中的测量值,即多普勒功率谱的一阶矩来确定的。校准灌注值取决于悬浮液的几个参数,这些参数很难以足够的精度保持恒定,例如浓度,温度和微球尺寸分布。因此,校准程序本身可能会在测量值中引入很大的误差。本文描述并演示了一种经过更改的校准程序,其中使用了零阶矩。由于上述参数仅影响多普勒功率谱的频率内容,而不影响总功率,因此零阶矩将独立于那些参数。结果表明,使用所提出的方法,通过对具有广泛散射特性和温度范围的不同散射液体进行测量得出的校准值变化仅为百分之几。对于传统的校准程序,此变化仅对应于参考液体温度仅1°C的变化所引起的误差。所提出的校准方法还可以在测量和模拟的多普勒功率谱之间进行绝对电平比较。

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