Christopher D A, Burns P N, Hunt J W, Foster F S
Department of Medical Biophysics, University of Toronto, Sunnybrook Health Science Centre, Ontario, Canada.
Ultrasound Med Biol. 1995;21(2):187-201. doi: 10.1016/s0301-5629(94)00101-4.
The combined effect of three assumptions relating to refraction, the speed of sound in tissue and the speed of sound in blood on the accuracy of Doppler ultrasound blood velocity measurements has been investigated. A theoretical relationship giving the net velocity measurement error introduced by these three assumptions has derived using a model in which tissue and blood layers are separated by straight, parallel boundaries. This net error is dependent on the assumed and actual speed of sound in tissue, the assumed speed of sound in blood and the Doppler angle, but is effectively independent of the actual speed of sound in blood. For clinical blood velocity measurements, the net error is estimated to be as much as an 8% overestimation of the actual velocity, higher than previously predicted for any of the factors individually. The relationship also predicts a net velocity measurement error in experimental flow systems and string phantoms which is dependent on the speed of sound in the liquid bath. A water bath at room temperature will give an overestimation of approximately 2%. Experimental investigations using conventional and modified string phantoms and a 5-MHz linear phased array system support these conclusions. The effect of perturbing the layers from their parallel orientation has also been considered theoretically and has provided additional support for the above conclusions. These results may help more accurate Doppler velocity measurements in both experimental and clinical settings.
研究了与折射、组织中的声速和血液中的声速相关的三个假设对多普勒超声血流速度测量准确性的综合影响。使用一种模型推导出了一个理论关系,该模型中组织层和血液层由直的平行边界分隔,此关系给出了由这三个假设引入的净速度测量误差。这个净误差取决于组织中假设的和实际的声速、血液中假设的声速以及多普勒角度,但实际上与血液中的实际声速无关。对于临床血流速度测量,估计净误差高达实际速度高估8%,高于之前对任何单个因素的预测。该关系还预测了实验流动系统和线阵模型中的净速度测量误差,该误差取决于液体浴中的声速。室温下的水浴会导致大约2%的高估。使用传统和改进的线阵模型以及5兆赫线性相控阵系统的实验研究支持了这些结论。从理论上也考虑了使层偏离其平行方向的影响,并为上述结论提供了额外支持。这些结果可能有助于在实验和临床环境中进行更准确的多普勒速度测量。