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Real-time monitoring of the transients of HIFU-induced lesions

机译:实时监测HIFU诱发病变的瞬变

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RF data from standard B-mode and pulse inversion (PI) imaging of HIFU lesion formation of freshly excised tissue was collected before, during, and after lesion formation experiments in ex vivo tissue. Exposures at intensity levels of 1100 W/cm/sup 2/ to 2500 W/cm/sup 2/ for durations of 2, 3, and 5 seconds in a single shot were used. Also continuous raster scan of longer duration (10-20 seconds) to form slice or volumetric lesions were monitored. Monitoring was done with a diagnostic scanner and RF data was acquired at 1 frame/second for 60 seconds starting 5 seconds before each shot. Lesion maps from grayscale B-mode and PI images were obtained using level-set methods for each frame and compared with the actual lesion found by inspection. Lesion maps from PI imaging were consistently smaller in size and more in line with the actual lesion size. Transient analysis of harmonic content of lesion echoes show sustained harmonic activity for 10-15 seconds after the therapy pulse is turned off (in ex vivo liver tissue). A gradual drop in this activity follows with steady state reached within 50-60 seconds. It was also shown that the use of short microsecond pulses from the therapy transducer to expose the lesion location during real-time imaging significantly increased the scattering from lesion location.
机译:在离体组织的病变形成实验之前,期间和之后,收集来自新鲜切除组织的HIFU病变形成的标准B模式和脉冲倒置(PI)成像的RF数据。在一次拍摄中,使用强度级别为1100 W / cm / sup 2 /至2500 W / cm / sup 2 /的曝光时间为2、3和5秒。还监测了较长时间(10-20秒)的连续光栅扫描以形成切片或体积病变。使用诊断扫描仪进行监视,并在每次拍摄前的5秒开始以1帧/秒的速度采集60秒的RF数据。使用水平集方法为每帧获取灰度B模式和PI图像的病变图,并将其与通过检查发现的实际病变进行比较。 PI成像的病灶图始终较小,并且与实际病灶大小一致。病变回波的谐波含量的瞬态分析显示,在关闭治疗脉冲后(在离体肝脏组织中),持续的谐波活动持续10-15秒。此活动逐渐下降,并在50-60秒内达到稳定状态。还显示了在实时成像过程中使用来自治疗换能器的短微秒脉冲来暴露病灶位置,显着增加了来自病灶位置的散射。

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