Walker Andrew, Olsson Eva, Wranne Bengt, Ringqvist Ivar, Ask Per
Department Clinical Physiology, Central Hospital, Västerås, Sweden.
Ultrasound Med Biol. 2004 Jan;30(1):127-32. doi: 10.1016/j.ultrasmedbio.2003.08.020.
Blood and tissue velocity are measured and analysed in cardiac, vascular and other applications of diagnostic ultrasound (US). An error in system calibration is a potential risk for misinterpretation of the measurements. To determine the accuracy in velocity calibration, we tested three common commercial US systems using a Doppler string phantom. We tested pulsed and continuous-wave Doppler modes for velocities relevant to both cardiac blood flow and tissue-velocity estimation. The US systems were tested with settings and transducers commonly used in cardiac applications. One system consistently overestimated velocity by about 5%, whereas the other two systems were quite accurate in velocity estimation. These findings emphasize the importance of continuous quality control of US equipment.
在心脏、血管及其他诊断超声(US)应用中测量并分析血液和组织速度。系统校准中的误差是测量结果误判的潜在风险。为确定速度校准的准确性,我们使用多普勒弦线体模测试了三种常见的商用超声系统。我们针对与心脏血流和组织速度估计相关的速度测试了脉冲和连续波多普勒模式。超声系统采用心脏应用中常用的设置和换能器进行测试。一个系统始终高估速度约5%,而其他两个系统在速度估计方面相当准确。这些发现强调了对超声设备进行持续质量控制的重要性。