Winkler P, Helmke K
Department of Pediatric Radiology, University Hospital Eppendorf, Hamburg, FRG.
Pediatr Radiol. 1992;22(1):43-7. doi: 10.1007/BF02011607.
An in-vitro steady flow system was designed to determine the lowest flow velocities that can be detected by echographic colour flow imaging and spectral analysis. The flow detection level was determined hydrostatically by reducing the fluid level to below the point at which a flow signal was visible, then increasing the height until the colour flow reappeared. This was confirmed in all instances by spectral analysis. The height (angle-corrected velocity) of the spectral envelope was also determined. Mean volume flow was then obtained by using a graduated cylinder and a stop watch. The lowest hematocrit detectable was identified using a stepwise dilution of packed human red blood cells with 0.9% sodium chloride. Three different PVC-tubes with inner diameters of 2.1 mm, 1.1 mm and 0.51 mm were used.(ABSTRACT TRUNCATED AT 250 WORDS)
设计了一种体外稳流系统,以确定超声彩色血流成像和频谱分析能够检测到的最低流速。通过将液位降低到可见血流信号的点以下,然后增加高度直至彩色血流再次出现,以流体静力学方式确定血流检测水平。在所有情况下均通过频谱分析证实了这一点。还确定了频谱包络的高度(角度校正速度)。然后使用量筒和秒表获得平均体积流量。通过用0.9%氯化钠逐步稀释人浓缩红细胞来确定可检测到的最低血细胞比容。使用了三种不同内径分别为2.1毫米、1.1毫米和0.51毫米的聚氯乙烯管。(摘要截短于250字)