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首页> 外文期刊>Applied optics >Fiber-based multispeckle detection for time-resolved diffusing-wave spectroscopy: characterization and application to blood flow detection in deep tissue
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Fiber-based multispeckle detection for time-resolved diffusing-wave spectroscopy: characterization and application to blood flow detection in deep tissue

机译:时间分辨扩散波光谱的基于光纤的多斑点检测:表征和在深部组织血流检测中的应用

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摘要

We present a technique for the measurement of temporal field autocorrelation functions of multiply scattered light with subsecond acquisition time. The setup is based on the parallel detection and autocorrelation of intensity fluctuations from statistically equivalent but independent speckles using a fiber bundle, an array of avalanche photodiodes, and a multichannel autocorrelator with variable integration times between 6.5 and 104 ms. Averaging the autocorrelation functions from the different speckles reduces the integration time in diffusing-wave spectroscopy experiments drastically, thus allowing us to resolve nonstationary scatterer dynamics with single-trial measurements. We present applications of the technique to the measurement of arterial and venous blood flow in deep tissue. We find strong deviations both of the shape and characteristic decay time of autocorrelation functions recorded at different phases of the pulsation cycle from time-averaged autocorrelation functions.
机译:我们提出了一种用于测量亚秒级采集时间的多重散射光的时域自相关函数的技术。该设置基于使用光纤束,雪崩光电二极管阵列和可变积分时间在6.5到104 ms之间的多通道自相关器,对强度上的波动进行并行检测和自相关,这些强度波动在统计上等效但独立。平均不同散斑的自相关函数可以大大减少漫射波光谱实验中的积分时间,从而使我们能够通过单次测量来解决非平稳散射体动力学问题。我们介绍了该技术在深层组织中动脉和静脉血流测量中的应用。我们发现,在时间周期的自相关函数中,在脉动周期的不同阶段记录的自相关函数的形状和特征衰减时间均存在很大偏差。

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