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Correlation analysis of received echoes from contrast agents in-vitro and in-vivo

机译:体内和体外造影剂收到回波的相关性分析

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Ultrasound contrast agents can be used to receive signals from vessels significantly smaller than the effective resolution of an ultrasound system. The signal from these microbubbles is coherent across pulses as long as the microbubble is intact, looking like a moving reflector that is more echogenic than blood cells and shifted in spectral mean. When the microbubble is destroyed, the received signal decorrelates between pulses. In-vitro optical and acoustical experiments observing single bubble echoes were conducted. Three mechanisms of destruction were observed optically: static diffusion, pressure-driven diffusion, and fragmentation. Fragmentation was often observed at pressures above 1.4 MPa, while static diffusion and acoustical diffusion were most frequently responsible for bubble destruction at low transmitted pressure. Correlation analysis between echoes received from the same bubble provided analytical evidence of bubble destruction; moreover, a detection scheme based on decorrelation was designed and tested.
机译:超声造影剂可用于从明显小于超声系统有效分辨率的血管中接收信号。只要微泡完好无损,来自这些微泡的信号在脉冲之间便是相干的,看起来就像一个移动的反射器,它比血细胞具有更大的回声,并且在频谱均值上也有偏移。当微泡被破坏时,接收到的信号在脉冲之间去相关。进行了观察单个气泡回声的体外光学和声学实验。从光学上观察到破坏的三种机理:静态扩散,压力驱动扩散和破碎。在高于1.4 MPa的压力下通常会观察到破裂,而静态扩散和声学扩散是造成低传输压力下气泡破坏的最常见原因。从同一气泡接收到的回波之间的相关分析提供了气泡破坏的分析证据。此外,设计并测试了基于解相关的检测方案。

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