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Power Spectrum and Blood Flow Velocity Images Obtained by Dual-Beam Backscatter Laser Doppler Velocimetry

机译:双光束反向散射激光多普勒测速仪获得的功率谱和血流速度图像

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We developed a micro multipoint laser Doppler velocimeter (μ-MLDV) for noninvasive in-vivo measurements of blood flow and we presented the results of demonstrations performed on experimental animals. In this paper, we investigate the validity of power spectrum analysis for determining the flow velocity and the minimum power of the semiconductor laser in the μ-MLDV. Although average velocity is generally estimated from a peak position (f_(peak)) in the power spectrum, the power spectrum of blood flow included an additional component in the high-frequency region. The conventional method for determining the average velocity of flows of transparent artificial fluids, which involves determining the average velocity from f_(peak), is unsuitable for in-vivo measurements of blood flow. The laser power was reduced from 140 to 30mW since 30mW was the minimum power at which images of blood flow velocity in microvessels could be obtained. About 30mW (power density of 15mW/mm~2) is the maximum power which can be irradiated to humans. Further reduction in the laser power is necessary before this technique can be applied to humans.
机译:我们开发了一种微型多点激光多普勒测速仪(μ-MLDV),用于非侵入性体内血流测量,并介绍了对实验动物进行示范的结果。在本文中,我们研究了功率谱分析对于确定μ-MLDV中半导体激光器的流速和最小功率的有效性。虽然通常根据功率谱中的峰值位置(f_(peak))来估计平均速度,但是血流的功率谱在高频区域中包括附加成分。用于确定透明人造流体的平均流速的常规方法,其中包括根据f_(peak)确定平均速度,不适用于体内血流测量。激光功率从140mW降低到30mW,因为30mW是可以获得微血管血流速度图像的最小功率。可以照射到人体的最大功率约为30mW(功率密度为15mW / mm〜2)。在将该技术应用于人类之前,有必要进一步降低激光功率。

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