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Fluid flow measurement for diagnosis of ventricular shunt malfunction using nonlinear responses of microbubbles in the contrast-enhanced ultrasound imaging

机译:造影剂超声成像中利用微气泡的非线性响应进行心室分流功能诊断的流体流量测量

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摘要

Contrast-enhanced ultrasound imaging utilizing the nonlinear responses of microbubbles is proposed for identifying ventricular shunt malfunction. The developed method suppresses the signal from walls of a shunt catheter and background tissues, and allows accurate measurements of the cerebrospinal fluid flow within the shunt catheter using a relatively small concentration of microbubbles. The flow rates estimated in the linear mode were significantly underestimated (65% at 0.1 ml/min and 5.0% microbubble concentration) while estimates using the nonlinear mode were not. Overall, the nonlinear responses of microbubbles improve the estimation of flow rates in a shunt catheter at low concentrations of microbubbles.
机译:提出了利用微泡的非线性响应的增强超声成像,以识别心室分流功能障碍。所开发的方法抑制了来自分流导管壁和背景组织的信号,并允许使用相对少量的微气泡来精确测量分流导管内的脑脊髓液流量。线性模式下估计的流速被大大低估了(0.1 ml / min时为65%,微气泡浓度为5.0%),而使用非线性模式下的估计则没有。总体而言,微气泡的非线性响应改善了低浓度微气泡下分流导管中流速的估计。

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