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Glass-fiber self-mixing intra-arterial laser Doppler velocimetry: signal stability and feedback analysis

机译:玻璃纤维自混合动脉内激光多普勒测速仪:信号稳定性和反馈分析

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We have developed a blood velocimeter based on the principle of self-mixing in a semiconductor laser diode through an optical fiber. The intensity of the light is modulated by feedback from moving scattering particles that contain the Doppler-shift frequency. Upon feedback the characteristics of the laser diode change. The threshold current decreases, and an instable region may become present above the new threshold. The amplitude of the Doppler signal turns out to be related to the difference in intensity between situations with and without feedback. This amplitude is highest just above feedback. The suppression of reflection from the glass-fiber facets is of paramount importance in the obtaining of a higher signal-to-noise ratio. Using an optical stabilization of the feedback, we optimized the performance of the laser-fiber system and the Doppler modulation depth and clarified its behavior with a suitable physical model. We also investigated the effect of the finite coherence length of the laser. We tested the efficiency of the self-mixing velocimeter in vivo with the optical glass fiber inserted in the artery with endoscopic catheters, both in upstream and in downstream blood flow conditions. For the latter we used a special side-reflecting device solution for the fiber facet to allow downstream measurements, (C) 2002 Optical Society of America. [References: 17]
机译:我们已经开发了一种基于通过光纤在半导体激光二极管中自混合原理的血液测速仪。通过包含多普勒频移频率的移动散射粒子的反馈来调制光的强度。在反馈时,激光二极管的特性发生变化。阈值电流减小,并且在新阈值以上可能会出现不稳定区域。事实证明,多普勒信号的幅度与有无反馈情况之间的强度差有关。该幅度在反馈之上刚好最高。在获得更高的信噪比时,抑制玻璃纤维小面的反射至关重要。利用反馈的光学稳定性,我们优化了激光光纤系统的性能和多普勒调制深度,并通过合适的物理模型阐明了其行为。我们还研究了激光有限相干长度的影响。我们在上游和下游血流情况下,使用内窥镜导管将光学玻璃纤维插入动脉中,测试了体内自混合测速仪的效率。对于后者,我们使用了一种特殊的侧面反射装置解决方案来处理光纤端面,以便进行下游测量,(C)2002美国光学学会。 [参考:17]

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