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用于动脉内光学血流测速的激光二极管中的自混合反馈。

Self-mixing feedback in a laser diode for intra-arterial optical blood velocimetry.

作者信息

Scalise L, Steenbergen W, de Mul F

出版信息

Appl Opt. 2001 Sep 1;40(25):4608-15. doi: 10.1364/ao.40.004608.

Abstract

Intra-arterial measurements of the velocity and the average flow of red-blood cells were investigated by means of a fiber-coupled laser Doppler velocimeter based on the self-mixing effect. The velocity of the red cells was calculated from the frequency of the signal that occurs when light, scattered back from a moving object in front of a fiber into a laser-diode cavity, interferes with the laser cavity's proper mode. These fluctuations occur at the Doppler frequency. The signal was obtained from the photodiode that is present in the laser diode's housing. Temperature control and stabilization of the diode cavity were introduced to reduce the light-intensity fluctuation that is due to mode hopping of the diode. The velocimeter was calibrated with a rotating disk covered with white paper (nonlinearity of 2.6% for velocities up to 0.4 m/s) and tested in vitro as a fluid velocimeter. The velocimeter was used in in vivo tests on the iliac artery of a 35-kg pig and on the arteria pulmonaris of a healthy calf. The optical fiber was placed in the iliac artery by a basket catheter 4 cm proximal to the bifurcation of the femoral artery. The average arterial blood flow velocity of the red cells were measured upstream and downstream. A special cleaving procedure for the fiber tip in downstream measurement is reported. Blood-velocity measurement is compared with values generated by an ultrasound flowmeter, and a difference of less than 9% is found.

摘要

利用基于自混合效应的光纤耦合激光多普勒测速仪对红细胞的速度和平均血流进行了动脉内测量。红细胞的速度是根据当从光纤前方移动物体散射回的光进入激光二极管腔时产生的信号频率计算得出的,该信号与激光腔的本征模发生干涉。这些波动以多普勒频率出现。信号是从激光二极管外壳中存在的光电二极管获得的。引入了二极管腔的温度控制和稳定措施,以减少由于二极管模式跳变引起的光强度波动。该测速仪用覆盖有白纸的旋转圆盘进行校准(速度高达0.4 m/s时非线性为2.6%),并作为流体测速仪进行体外测试。该测速仪用于对一头35千克猪的髂动脉和一头健康小牛的肺动脉进行体内测试。通过一个篮状导管将光纤放置在股动脉分叉近端4厘米处的髂动脉中。测量了红细胞在上下游的平均动脉血流速度。报告了下游测量中光纤尖端的一种特殊切割方法。将血流速度测量值与超声流量计产生的值进行比较,发现差异小于9%。

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