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Imaging feedback for histotripsy by characterizing dynamics of acoustic radiation force impulse (ARFI)-induced shear waves excited in a treated volume

机译:通过表征在处理后的体积中激发的声辐射力脉冲(ARFI)诱导的剪切波的动力学来对组织肌的成像反馈进行成像

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Our previous study indicated that shear waves decay and propagate at a lower speed as they propagate into a tissue volume mechanically fractionated by histotripsy. In this paper, we hypothesize that the change in the shear dynamics is related to the degree of tissue fractionation, and can be used to predict histotripsy treatment outcomes. To test this hypothesis, lesions with different degrees of tissue fractionation were created in agar-graphite tissue phantoms and ex vivo kidneys with increasing numbers of therapy pulses, from 0 to 2000 pulses per treatment location. The therapy pulses were 3-cycle 750-kHz focused ultrasound delivered at a peak negative/positive pressure of 17/108 MPa and a repetition rate of 50 Hz. The shear waves were excited by acoustic radiation force impulse (ARFI) focused at the center of the lesion. The spatial and temporal behavior of the propagating shear waves was measured with ultrasound plane wave imaging. The temporal displacement profile at a lateral location 10 mm offset to the shear excitation region was detected with M-mode imaging. The decay and delay of the shear waves were quantitatively characterized on the temporal displacement profile. Results showed significant changes in two characteristics on the temporal displacement profile: the peak-to-peak displacement decayed exponentially with increasing numbers of therapy pulses; the relative time-to-peak displacement increased with increasing numbers of therapy pulses, and appeared to saturate at higher numbers of pulses. Correspondingly, the degree of tissues fractionation, as indicated by the percentage of structurally intact cell nuclei, decreased exponentially with increasing numbers of therapy pulses. Strong linear correlations were found between the two characteristics and the degree of tissue fractionation. These results suggest that the characteristics of the shear temporal displacement profile may provide useful feedback information regarding the treatment outcomes.
机译:我们先前的研究表明,剪切波衰减并以较低的速度传播,因为它们传播到由组织学机械破碎的组织体积中。在本文中,我们假设剪切动力学的变化与组织分级的程度有关,并可用于预测组织学治疗结果。为了验证这一假设,在琼脂-石墨组织体模和离体肾脏中形成了具有不同程度组织分级的病变,治疗脉冲的数量不断增加,每个治疗位置从0到2000脉冲。治疗脉冲是3周期750 kHz聚焦超声,以17/108 MPa的负压/正压峰值和50 Hz的重复频率递送。剪切波由聚焦在病变中心的声辐射力脉冲(ARFI)激发。用超声平面波成像测量传播的剪切波的时空行为。用M模式成像检测到在距剪切激励区域偏移10 mm的横向位置处的时间位移轮廓。剪切波的衰减和延迟在时间位移剖面上被定量表征。结果显示时间位移曲线上的两个特征发生了显着变化:峰峰值位移随治疗脉冲数量的增加呈指数衰减;随着治疗脉冲数的增加,相对于峰值时间的位移也增加,并且在更高的脉冲数下似乎达到饱和。相应地,组织分级的程度(如结构完整的细胞核的百分比所示)随着治疗脉冲数量的增加呈指数下降。在这两个特征与组织分级程度之间发现了很强的线性相关性。这些结果表明,剪切时间位移曲线的特征可以提供有关治疗结果的有用反馈信息。

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