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首页> 外文期刊>Ultrasound in Medicine and Biology >Comparison between color Doppler twinkling artifact and acoustic shadowing for renal calculus detection: an in vitro study.
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Comparison between color Doppler twinkling artifact and acoustic shadowing for renal calculus detection: an in vitro study.

机译:彩色多普勒闪烁伪影与声学阴影在肾结石检测中的比较:一项体外研究。

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摘要

To assess the ability of the color Doppler twinkling artifact to detect renal stones relative to acoustic shadowing, we scanned seven uric acid calculi embedded in a tissue mimicking phantom and in sheep kidneys using a high frequency linear array and a standard curved linear array ultrasound scanheads (L12-5 and C5-2; Philips Ultrasound, Bothel, WA, USA). The stones were scanned in and out of focus. The scans were optimized for shadow formation in gray-scale imaging and for color twinkling in color Doppler imaging. The images were analyzed using Image J (http://rsb.info.nih.gov/ij/). We calculated the contrast to noise ratios (C/N) for the acoustic shadows and the color twinkling artifact compared with background. These measurements were then evaluated using a single factor analysis of variance (ANOVA) and paired two-tailed t tests. With these comparisons, the C/Ns for twinkling were significantly higher than for acoustic shadowing. On average, twinkling produced 19.2 dB greater C/Ns for stones in thephantom and 17.6 dB more for the stones in the kidneys. In addition, ANOVA showed that twinkling is resistant to focusing and scanning frequency differences. The results suggest that the twinkling artifact is a robust method for detecting the presence of renal calculi. The color signature is easier to detect than is acoustic shadowing. Twinkling may be relatively resistant to many of the problems that plague ultrasound examinations for renal stones, i.e., out-of-focus scans that might be caused by beam aberration effects due to patient body habitus.
机译:为了评估彩色多普勒闪烁伪影检测相对于声学阴影的肾结石的能力,我们使用高频线性阵列和标准弯曲线性阵列超声扫描头扫描了模拟幻影的组织和绵羊肾脏中嵌入的七个尿酸结石( L12-5和C5-2;美国华盛顿州博塞尔的Philips Ultrasound)。石头被扫描进和聚焦。扫描针对灰度成像中的阴影形成和彩色多普勒成像中的彩色闪烁进行了优化。使用图像J(http://rsb.info.nih.gov/ij/)分析图像。我们计算了声学阴影和颜色闪烁伪像与背景相比的对比噪声比(C / N)。然后使用单因素方差分析(ANOVA)和成对的双尾t检验对这些测量值进行评估。通过这些比较,闪烁的C / N明显高于声学阴影。平均而言,闪烁产生的幻像结石的C / Ns高19.2 dB,肾脏结石的C / Ns高17.6 dB。此外,方差分析表明,闪烁可抵抗聚焦和扫描频率差异。结果表明,闪烁的伪影是检测肾结石存在的可靠方法。颜色签名比声学阴影更易于检测。闪烁可能对困扰超声检查肾结石的许多问题具有相对的抵抗力,即困扰患者的身体习惯引起的光束畸变效应可能导致的散焦扫描。

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