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Calibration of lesion boundary mapping based on ultrasonic elasticity

机译:基于超声弹性的病灶边界图标定

摘要

A medium of interest is interrogated according to ultrasound elastography imaging. A preliminary elasticity-spatial-map is formed. This map is calibrated against a reference elasticity-spatial-map that comprises an array (232) of different (240) elasticity values. The reference map is formed to be reflective of ultrasonic shear wave imaging of a reference medium. The reference medium is not, nor located at, the medium of interest, and may be homogeneous. Shear waves that are propagating in a medium are tracked by interrogating the medium. From tracking locations on opposite sides of an ablated-tissue border, propagation delay of a shear wave in the medium and of another shear wave are measured. The two shear waves result from respectively different pushes (128) that are separately issued. A processor decides, based on a function of the two delays, that the border crosses between the two locations. The calibrated map is dynamically updated and may include post-ablation border expansion (346) and time-annotated previous stages (344, 348).
机译:根据超声弹性成像成像询问感兴趣的介质。形成初步的弹性空间图。对照包括不同(240)弹性值的阵列(232)的参考弹性空间图来校准该图。参考图形成为反映参考介质的超声剪切波成像。参考介质不在目标介质上,也不位于目标介质上,并且可以是均质的。通过询问介质来跟踪在介质中传播的剪切波。从在切除的组织边界的相对侧上的跟踪位置,测量剪切波在介质中和另一剪切波的传播延迟。两个剪切波分别来自分别发出的不同的推动(128)。处理器基于两个延迟的函数来确定边界在两个位置之间交叉。校准图被动态更新,并且可以包括消融后边界扩展(346)和带时间注释的先前阶段(344、348)。

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