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首页> 外文期刊>Artificial cells, blood substitutes, and biotechnology >Fiber optical spatial filter anemometry intravital measurement of red blood flow velocity (RBCV) in the microcirculation
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Fiber optical spatial filter anemometry intravital measurement of red blood flow velocity (RBCV) in the microcirculation

机译:光纤空间过滤器风速测定法微循环中活体测量红血流速度(RBCV)

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摘要

The fiberoptical spatial filter anemometry (SFA) is a common technique based on an optical grid to measure the velocity of corpuscular components in a multiphase flow, e.g. in the microvessels. The technical innovation is the analysis of flow velocities using an optical grid sensor and frequency analysis by Fast Fourier Transformation (FFT). This study describes a non-invasive, on-line technique to measure RBCV in the microcirculation. The sensor's validity was proven by in vitro measurements using a rotation disk of an exactly defined velocity with a correlation coefficient of 0,99967. For validation of RBCV measurements in the microcirculation in vivo, the setup was adapted to an intravital microscope. RBCV was measured in arterioles, capillaries, and postcapillary venules ranging from 8 - 140 μm diameter. As reference method for velocity measurements a computer assisted imaging system was used to measure the RBC-velocity in the identical vessels by frame to frame analysis. Both methods revealed a high significant correlation using transillumination technique for capillaries (r0,986, p<0,001) and venules (r=0,952, p<0,001) as well as epiillumination technique (capillaries r0,939, venules r=0,975, p<0,001).
机译:光纤空间滤波器风速仪(SFA)是一种基于光栅的通用技术,可用于测量多相流(例如,多相流)中微粒成分的速度。在微血管中。技术创新是使用光栅传感器对流速进行分析,并通过快速傅立叶变换(FFT)进行频率分析。这项研究描述了一种非侵入性的在线技术来测量微循环中的RBCV。通过使用精确定义速度且相关系数为0,99967的旋转盘进行体外测量,证明了传感器的有效性。为了验证体内微循环中的RBCV测量值,将设置应用于活体显微镜。在小动脉,毛细血管和毛细血管后小静脉中测量RBCV,直径范围为8-140μm。作为速度测量的参考方法,使用计算机辅助成像系统通过逐帧分析来测量相同血管中的RBC速度。两种方法均表明,使用透照技术对毛细血管(r0,986,p <0,001)和小静脉(r = 0,952,p <0,001)和落射照明技术(毛细血管r0,939,小静脉r = 0,975,p < 0,001)。

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