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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Enhanced Shock Scattering Histotripsy With Pseudomonopolar Ultrasound Pulses
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Enhanced Shock Scattering Histotripsy With Pseudomonopolar Ultrasound Pulses

机译:伪单极超声脉冲增强的冲击散射组织学

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Shock scattering histotripsy involves a complex interaction between positive and negative phases of an acoustic burst to initiate a robust cavitation bubble cloud. To more precisely study these effects and optimize shock scattering histotripsy therapy, we constructed a frequency compounding transducer to generate pseudomonopolar ultrasound pulses. The transducer consisted of 113 individual piezoelectric elements with various resonant frequencies (250 kHz, 500 kHz, 750 kHz, 1 MHz, 1.5 MHz, 2 MHz, and 3 MHz). For each resonant frequency, an extremely short pulse could be generated. Pseudomonopolar peak positive pulses were generated by aligning the principal peak positive pressures of individual frequency components temporally, so that they added constructively, and destructive interference occurred outside the peak-positive-overlapped temporal window. After inverting the polarity of the excitation signals, pseudomonopolar peak negative pulses were generated similarly by aligning principal peak negative pressures. Decoupling the positive and negative acoustic phases could have significant advantages for therapeutic applications enhancing precision and avoiding cavitation at tissue interfaces by using mostly positive pressure pulses. For example, we show that 16 shock scattering bubble clouds can be generated using only peak positive pulses following a single peak negative pulse that initiates a pressure release "seed cloud" from which the first shock front is "scattered." Subsequent positive only pulses result in a precise elongated lesion within red blood cell phantoms.
机译:冲击散射的组织三态性涉及声波爆发的正相和负相之间的复杂相互作用,以启动强大的空化气泡云。为了更精确地研究这些效应并优化休克散射组织学疗法,我们构建了一个频率复合换能器以生成伪单极超声脉冲。换能器由113个压电元件组成,具有不同的谐振频率(250 kHz,500 kHz,750 kHz,1 MHz,1.5 MHz,2 MHz和3 MHz)。对于每个谐振频率,可能会产生一个非常短的脉冲。伪单极峰正脉冲是通过在时间上对齐各个频率分量的主峰正压而产生的,从而使它们相长地相加,并且在峰正重叠时间窗之外发生破坏性干扰。在反转激励信号的极性之后,通过对准主峰负压类似地产生伪单极峰负脉冲。对正和负声相进行解耦可能对治疗应用具有明显的优势,可提高治疗精度,并通过主要使用正压力脉冲来避免组织界面处的气穴现象。例如,我们表明,仅在单个峰值负脉冲之后使用峰值正脉冲可​​以生成16个冲击散射气泡云,该单个峰值负脉冲启动压力释放“种子云”,从该“压力云”中散布出第一个冲击前沿。随后的仅阳性脉冲导致红细胞体模内出现精确的细长病变。

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