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Ultrasound-induced fluid uptake phenomenon in porcine uterine tissue

机译:超声引起的猪子宫组织液体吸收现象

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Previous studies have shown that pulsed cavitational ultrasound therapy (“histotripsy”) can mechanically fractionate many types of tissue. However, when uterine tissue was exposed to histotripsy pulses ex vivo, the tissue was observed to take up fluid from surrounding media without visual tissue damage. This paper is a quantitative study of this fluid uptake phenomenon and its association with acoustic cavitation. The endometrial surface of porcine uterine specimens were exposed to histotripsy pulses generated by a single-element 1.1 MHz transducer at a repetition frequency of 4 kHz, pulse duration of 10 cycles, peak rarefactional pressure (P) of 8.8–11.6 MPa, and exposure time of 25–100 seconds. The results showed that, at the highest pressure level, the amount of fluid reached a plateau after 50 seconds of ultrasound exposure, and the fluid uptake for 50 seconds exposure was quantified to be approximately a quarter (26.1±15.7%) of the specimen weight. In addition, in the association study with cavitation by varying pressure levels, this fluid uptake only occurred at P(−) ≥ 9.7MPa when the initiation of the cavitation bubble cloud was detected by a passive monitoring transducer, and the cavitation activity indicated by acoustic backscatter increased with the fluid uptake. These results suggested that histotripsy can induce a large volume of fluid uptake in uterine tissue and this phenomenon is highly associated with cavitating bubble clouds activity. This fluid uptake phenomenon may have potential for drug delivery.
机译:先前的研究表明,脉冲空化超声治疗(“组织碎裂”)可以机械分割许多类型的组织。然而,当子宫组织离体暴露于组织变性脉冲时,观察到该组织吸收了周围介质中的液体而没有视觉组织损伤。本文是对这种流体吸收现象及其与声空化的关系的定量研究。猪子宫标本的子宫内膜表面暴露于单元素1.1 MHz换能器产生的组织变性脉冲,其重复频率为4 kHz,脉冲持续时间为10个周期,峰值稀疏压力(P -)为8.8–11.6 MPa,暴露时间为25–100秒。结果表明,在最高压力水平下,超声暴露50秒后液体量达到平稳状态,暴露50秒暴露的液体量被量化为样品重量的约四分之一(26.1±15.7%)。 。此外,在通过改变压力水平进行空化的关联研究中,当通过被动监测换能器检测到空化气泡云的开始时,这种流体吸收仅在P (-)≥9.7MPa时发生,声反向散射指示的空化活动随着流体的吸收而增加。这些结果表明,组织分裂症可引起子宫组织中大量的液体吸收,并且这种现象与空化的气泡云活动高度相关。这种液体吸收现象可能具有药物输送的潜力。

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