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An Improved Instrument for Real-Time Measurement of Blood Flow Velocity in Microvessels

机译:一种实时测量微血管血流速度的改进仪器

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A new approach for the measurement of red blood cell velocity at the level of microcirculation has been developed and characterized. The new real-time and automated measurement system is based on the dual-slit methodology, and blood flow information is extracted from images and transduced into two analog photometric signals and then processed using a hybrid analog–digital system that performs the cross correlation of the signals in real time. The characterization of the system consists of a calibration with a known velocity target, yielding to the hyperbolic calibration curve velocity versus delay and the determination of the velocity detectable range from 0.3 to 120 mm/s. A theoretical study of the measurement uncertainty and parametric studies were carried out to test the system robustness to changes of parameters and to determine the optimal configuration that is applicable to various experimental conditions. The system was further tested in in vivo experiments in the rat cremaster preparation in different types of vessels and flow velocities to verify the consistency of the results, as compared with those from conventional measuring systems. In addition, the dynamic behavior of the system and its response to changes in the measured velocity were studied through a continuous velocity record that was obtained during an experimental procedure.
机译:已经开发并表征了一种在微循环水平上测量红细胞速度的新方法。新的实时和自动测量系统基于双缝方法,从图像中提取血流信息,并将其转换为两个模拟光度信号,然后使用混合模拟-数字系统对其进行互相关处理。实时发出信号。该系统的特征包括用已知的速度目标进行校准,得出双曲线校准曲线的速度与延迟的关系,以及确定速度可检测范围为0.3至120 mm / s。进行了测量不确定度的理论研究和参数研究,以测试系统对参数变化的鲁棒性,并确定适用于各种实验条件的最佳配置。与来自常规测量系统的结果相比,该系统在不同类型的血管和流速的大鼠提睾丸制备物中的体内实验中进行了进一步测试,以验证结果的一致性。此外,通过在实验过程中获得的连续速度记录,研究了系统的动态行为及其对测得速度变化的响应。

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