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技术说明:线性阵列换能器多普勒孔径位置对频谱峰值速度测量的影响——一项仿体研究。

Technical Note: Impact of Linear Array Transducer Doppler Aperture Location on Spectral Peak Velocity Measurements - A Phantom Study.

机构信息

Department of Radiology, Mayo Clinic, Rochester, MN, USA.

Department of Radiology, Mayo Clinic, Rochester, MN, USA.

出版信息

Ultrasound Med Biol. 2024 Sep;50(9):1479-1483. doi: 10.1016/j.ultrasmedbio.2024.05.016. Epub 2024 Jun 8.

Abstract

OBJECTIVE

Ultrasound beams sometimes need to be steered from the edge of linear array transducers to reach the sample volume with a desired Doppler angle in vascular exams. This phantom study aims to evaluate the impact of apertures located at the array edge on peak velocity (PV) measurements.

METHODS

Three ultrasound scanner systems equipped with eight transducers from 3 major ultrasound vendors were tested using a flow phantom with a horizontal tube. Five spectral Doppler measurements with the aperture positioned at one edge of the array and 5 with the aperture at the center of the array were obtained using all available scanner-transducer combinations while maintaining all scan parameters and the sample volume in the same tube location. Differences in PVs between center and edge apertures were compared across 4 constant flow rates.

RESULTS

The averaged PVs for all phantom flow rates ranged from 24.4 cm/s to 138.2 cm/s from the array center. The averaged PVs from the center aperture were significantly greater than the corresponding measurements from the edge aperture for each flow rate (all p < 0.001). The relative PV differences ranged from 6.7% to 19.4% across all transducers and flow rates.

CONCLUSION

Significantly lower PVs were consistently shown with the Doppler beam aperture at the array edge compared to center among all tested systems. This may be due to a narrower aperture width, shifted central axis, and less intrinsic spectral broadening error at the array edge. Controlling variations in Doppler aperture location is important in clinical applications which depend on consistent velocity measurements.

摘要

目的

在血管检查中,超声束有时需要从线性阵列换能器的边缘转向,以达到具有所需多普勒角度的样本体积。本 phantom 研究旨在评估位于阵列边缘的孔径对峰值速度 (PV) 测量的影响。

方法

使用具有水平管的流量 phantom 测试了配备来自 3 个主要超声供应商的 8 个换能器的三个超声扫描仪系统。使用所有可用的扫描仪-换能器组合,在保持相同的扫描参数和样本体积位于同一管位置的情况下,在阵列边缘的孔径处获得 5 次频谱多普勒测量值,并在阵列中心的孔径处获得 5 次测量值。比较了 4 个恒定流速下中心孔径和边缘孔径之间的 PV 差异。

结果

所有 phantom 流速的平均 PV 范围从阵列中心的 24.4cm/s 到 138.2cm/s。对于每个流速,中心孔径的平均 PV 明显大于相应的边缘孔径测量值(均 p < 0.001)。所有换能器和流速的相对 PV 差异范围为 6.7%至 19.4%。

结论

与所有测试系统的中心相比,在边缘处的多普勒波束孔径显示出明显较低的 PV。这可能是由于边缘处的孔径宽度较窄、中心轴偏移以及内在的频谱展宽误差较小。在依赖于一致速度测量的临床应用中,控制多普勒孔径位置的变化非常重要。

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