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Optical Feedback Interferometry sensor for flow characterization inside ex-vivo vessel

机译:光学反馈干涉仪传感器,用于表征离体血管内部的流量

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Pressure myograph systems allow the study of pharmacological effects of drugs and other vasoactive compounds on small isolated vessels by image processing. In this work, we present a new pressure myograph system based on Optical Feedback Interferometry (OFI) sensor that gives information about local velocity in fluids and enables reconstruction of a velocity profile inside a vessel. OFI is a self-aligned interferometric technique that uses the laser as both the light source and the receiver thus offering high sensitivity, fast response, and a simple and compact optical design. The local Doppler flow velocity is directly measured inside ex-vivo rat vessel with a step of 100 µm thus avoiding the need to use complex image processing and models based profile calculation for extracting flow velocity. This technique will be useful to investigate hemodynamics in microcirculation by measuring unsteady irregular blood.
机译:压力肌电描记器系统允许通过图像处理研究药物和其他血管活性化合物对小的分离血管的药理作用。在这项工作中,我们提出了一种基于光学反馈干涉法(OFI)传感器的新型压力肌电图仪系统,该系统可提供有关流体中局部速度的信息,并能够重建血管内的速度分布。 OFI是一种自对准干涉测量技术,使用激光作为光源和接收器,从而提供了高灵敏度,快速响应以及简单紧凑的光学设计。可以直接在离体大鼠血管内以100 µm的步长测量局部多普勒流速,因此无需使用复杂的图像处理和基于模型的轮廓计算来提取流速。通过测量不稳定的不规则血液,该技术将有助于研究微循环中的血液动力学。

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