Dineley Judith A, McDicken W Norman, Hoskins Peter R
Medical Physics Section, University of Edinburgh, Edinburgh, UK.
Ultrasound Med Biol. 2007 Jul;33(7):1123-31. doi: 10.1016/j.ultrasmedbio.2007.01.006. Epub 2007 Apr 16.
An investigation was made into the effect of acquisition parameters on the distension waveform estimated from tissue Doppler imaging (TDI). Physiological distension waveforms were generated using a compliant wall phantom. Distensions derived over a range of scanning geometries and transducer pressures were compared with those obtained in optimised scanning conditions. The estimated maximum distension decreased with scanning depth by 7% between 20 mm and 44 mm below the phantom surface, with an increase in transducer-vessel angle (by 22% from 0 degrees to 24 degrees ) and with a decrease in scan plane-vessel coincidence (by 34% from coincidence to 2 mm from the vessel central axis). An increase with transducer pressure was observed (by 20% from contact to high exerted pressure).
对采集参数对组织多普勒成像(TDI)估计的扩张波形的影响进行了研究。使用顺应性壁模型生成生理扩张波形。将在一系列扫描几何形状和换能器压力下获得的扩张与在优化扫描条件下获得的扩张进行比较。估计的最大扩张在模型表面以下20毫米至44毫米之间随扫描深度降低7%,随着换能器与血管角度增加(从0度增加到24度,增加22%)以及扫描平面与血管重合度降低(从重合到距血管中心轴2毫米,降低34%)而降低。观察到随着换能器压力增加(从接触压力到高施加压力增加20%)。