Oshinski J N, Ku D N, Bohning D E, Pettigrew R I
George W. Woodruff School of Mechanical Engineering, Georgia Institute of Technology, Atlanta, GA 30332-0405.
J Magn Reson Imaging. 1992 Nov-Dec;2(6):665-70. doi: 10.1002/jmri.1880020610.
Acceleration in blood flow can affect the accuracy of phase velocity measurements. Convective acceleration is due to changes in flow geometry and is independent of the time-varying acceleration caused by flow pulsatility. To analyze the effects of convective acceleration on flow velocity measurements, phase velocity measurements were obtained in steady laminar flow in the convergent segment of a 90%, hourglass-shaped stenosis phantom at a Reynolds number of 1,500. Measurements at the stenosis indicated that convective acceleration caused the measured values of average cross-sectional velocity to deviate as much as 37% from the theoretical values. The magnitude of the error could be accounted for by including the convective acceleration term in the phase shift equation. Convective acceleration effects should not be ignored in flow velocity measurements through stenoses, even when time-dependent acceleration due to flow pulsatility can be neglected.
血流加速会影响相速度测量的准确性。对流加速度是由于流动几何形状的变化引起的,与由血流脉动引起的随时间变化的加速度无关。为了分析对流加速度对流速测量的影响,在一个90%沙漏形狭窄模型的收敛段以1500的雷诺数进行稳定层流中的相速度测量。在狭窄处的测量表明,对流加速度导致平均横截面速度的测量值与理论值偏差高达37%。通过在相移方程中包含对流加速度项,可以解释误差的大小。即使由于血流脉动引起的随时间变化的加速度可以忽略不计,在通过狭窄处的流速测量中,对流加速度的影响也不应被忽视。