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    • 80. 发明公开
    • ULTRASOUND SHEAR WAVE ELASTOGRAPHY FEATURING THERAPY MONITORING
    • 超声波剪切波治疗仪监测治疗
    • EP3160358A1
    • 2017-05-03
    • EP15742390.6
    • 2015-06-15
    • Koninklijke Philips N.V.
    • XIE, HuaZHOU, ShiweiROBERT, Jean-lucSHAMDASANI, Vijay ThakurHUANG, Sheng-Wen
    • A61B8/08A61B8/00
    • In a diagnostic scanner for shear wave elastography imaging an ultrasound exposure safety processoris is configured for spatially relating respective definitions of an imaging zone (324), and an extended dead-tissue zone (312) that includes both a dead-tissue zone and a surrounding margin. Based on whether a push pulse focus (344, 348, 352) is to be within the extended dead-tissue zone, the processor automatically decides as to a level of acoustic power with which the pulse is to be produced. If it is to be within, the pulse may be produced with a mechanical index, a thermal index, and/or a spatial-peak-temporal-average intensity that exceeds respectively 1.9, 6.0 and 720 milliwatts per square centimeter. The imaging zone may be definable interactively so as to dynamically trigger the deciding and the producing, with optimal push pulse settings being dynamically derived automatically, without the need for user intervention. A display of multiple push pulse sites (344-352) allows user manipulation of spatial definition indicia (336) to dynamically control displacement tracking.
    • 在用于剪切波弹性成像成像的诊断扫描器中,超声波曝光安全处理器被配置用于在空间上关联成像区域(324)的相应定义以及包括死亡组织区域和周围环境的延长的死亡组织区域(312) 保证金。 基于推动脉冲聚焦(344,348,352)是否在扩展的死亡组织区域内,处理器自动地决定将产生脉冲的声学功率水平。 如果它位于其内部,则脉冲可以以机械指数,热指数和/或空间 - 峰值 - 时间平均强度产生,其分别超过每平方厘米1.9,6.0和720毫瓦。 成像区域可以交互式地定义,以便动态地触发决定和产生,其中自动动态地导出最佳推动脉冲设置,而不需要用户干预。 多个推动脉冲位置(344-352)的显示允许用户操纵空间定义标记(336)以动态地控制位移跟踪。