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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Histotripsy beyond the intrinsic cavitation threshold using very short ultrasound pulses: microtripsy
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Histotripsy beyond the intrinsic cavitation threshold using very short ultrasound pulses: microtripsy

机译:使用非常短的超声脉冲,超出固有气蚀阈值的组织曲张:微曲张

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Histotripsy produces tissue fractionation through dense energetic bubble clouds generated by short, high-pressure, ultrasound pulses. Conventional histotripsy treatments have used longer pulses from 3 to 10 cycles, wherein the lesionproducing bubble cloud generation depends on the pressurerelease scattering of very high peak positive shock fronts from previously initiated, sparsely distributed bubbles (the shockscattering mechanism). In our recent work, the peak negative pressure (P?????????) for generation of dense bubble clouds directly by a single negative half cycle, the intrinsic threshold, was measured. In this paper, the dense bubble clouds and resulting lesions (in red blood cell phantoms and canine tissues) generated by these supra-intrinsic threshold pulses were studied. A 32-element, PZT-8, 500-kHz therapy transducer was used to generate very short (<2 cycles) histotripsy pulses at a pulse repetition frequency (PRF) of 1 Hz and P????????? from 24.5 to 80.7 MPa. The results showed that the spatial extent of the histotripsy-induced lesions increased as the applied P????????? increased, and the sizes of these lesions corresponded well to the estimates of the focal regions above the intrinsic cavitation threshold, at least in the lower pressure regime (P????????? = 26 to 35 MPa). The average sizes for the smallest reproducible lesions were approximately 0.9 ?????? 1.7 mm (lateral ?????? axial), significantly smaller than the ?????????6-dB beamwidth of the transducer (1.8 ?????? 4.0 mm). These results suggest that, using the intrinsic threshold mechanism, well-confined and microscopic lesions can be precisely generated and their spatial extent can be estimated based on the fraction of the focal region exceeding the intrinsic cavitation threshold. Because the supra-threshold portion of the negative half cycle can be precisely controlled, lesions considerably less than a wavelength are easily produced, hence the term microtripsy.
机译:通过短的,高压的超声波脉冲产生的密集的高能气泡云,组织碎裂产生组织分级分离。常规的组织曲治疗方法使用了3到10个周期的较长脉冲,其中产生病变的气泡云的产生取决于先前引发的稀疏分布的气泡产生的非常高的峰值正激波前沿的压力释放散射(激波散射机制)。在我们最近的工作中,测量了直接通过单个负半周即内在阈值产生致密气泡云的峰值负压(P ?????????)。在本文中,研究了由这些超本征阈值脉冲产生的致密气泡云和由此产生的病变(在红细胞体模和犬组织中)。使用32个元素的PZT-8、500 kHz治疗换能器以1 Hz和P的脉冲重复频率(PRF)产生非常短的(<2个周期)组织学脉冲。 24.5至80.7 MPa。结果表明,随着所施加的P,组织曲霉病引起的病变的空间范围增加。至少在较低的压力状态下(P≈≥26至35 MPa),这些病变的大小与内在空化阈值之上的聚焦区域的估计值非常吻合。最小的可再现病变的平均大小约为0.9。 1.7mm(轴向轴向),明显小于换能器的6-dB波束宽度(1.8mm为4.0mm)。这些结果表明,使用内在阈值机制,可以精确地生成界限分明的微观病变,并且可以基于焦点区域超出内在空化阈值的部分来估计其空间范围。因为可以精确控制负半周期的超阈值部分,所以容易产生明显小于波长的损伤,因此称为微三段。

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