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Real time quantitative elastography using Supersonic Shear wave Imaging

机译:使用超声剪切波成像进行实时定量弹性成像

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Supersonic Shear Imaging (SSI) is a quantitative stiffness imaging technique based on the combination of a radiation force induced in tissue by an ultrasonic beam and ultrafast ultrasound imaging sequence (up to more than 10000 frames per second) catching in real time the propagation of the resulting shear waves. Local shear wave speed is estimated and enables the two dimensional mapping of shear elasticity. This imaging modality is implemented on conventional probes driven by dedicated ultrafast echographic devices and can be performed during a standard ultrasound exam. The clinical potential of SSI is today extensively investigated for many potential applications such as breast cancer diagnosis, liver fibrosis staging, cardiovascular applications, ophthalmology. This invited lecture presents a short overview of the current investigated applications of SSI.
机译:超音速剪切成像(SSI)是一种定量刚度成像技术,基于超声束在组织中感应的辐射力和超快超声成像序列(每秒高达10000帧以上)的组合,实时捕获超声的传播。产生的剪切波。估计局部剪切波速度,并能够对剪切弹性进行二维映射。这种成像模式是在由专用超快回波描记设备驱动的常规探头上实现的,并且可以在标准超声检查期间执行。今天,对SSI的临床潜力进行了广泛的研究,涉及许多潜在的应用,例如乳腺癌诊断,肝纤维化分期,心血管应用,眼科。本受邀的演讲简要介绍了SSI当前研究的应用。

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